請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75410完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.author | Wei-Yu Chen | en |
| dc.contributor.author | 陳威宇 | zh_TW |
| dc.date.accessioned | 2021-07-01T08:13:04Z | - |
| dc.date.available | 2021-07-01T08:13:04Z | - |
| dc.date.issued | 2003 | |
| dc.identifier.citation | 1. Aaronson, J. S., B. Eckman, R. A. Blevins, J. A. Borkowski, J. Myerson, S. Imran, and K. O. Elliston. 1996. Toward the development of a gene index to the human genome: an assessment of the nature of high-throughput EST sequence data. Genome. Res. 6:829-845. 2. Amici, C., C. Giorgi, A. Rossi, and M. G. Santoro. 1994. Selective inhibition of virus protein synthesis by prostaglandin A1: a translational block associated with HSP70 synthesis. J. Virol. 68:6890-6899. 3. Aoki, T., B. H. Nam, I. Hirono, and E. Yamamoto. 1999. Sequences of 596 cDNA Clones (565,977 bp) of Japanese Flounder (Paralichthys olivaceus) Leukocytes Infected with Hirame Rhabdovirus. Mar. Biotechnol. 1:477-488. 4. Aso, Y., T. Yamashita, K. Meno, and M. Murakami. 1994. Inhibition of prophenoloxidase-activating enzyme from Bombyx mori by endogeneors chymotrypsin inhibitors. Biochem. Mol. Biol. International 33:751-758. 5. Aspan, A., M. Hall, and K. Soderhall. 1990. The effect of endogenous proteinase inhibitors on the prophenoloxidase activating enzyme, a serine proteinase from crayfish haemocytes. Insect. biochem. 20:485-492. 6. Barillas-Mury, C., Y. S. Han, D. Seeley, and F. C. Kafatos. 1999. Anopheles gambiae Ag-STAT, a new insect member of the STAT family, is activated in response to bacterial infection. EMBO J. 18:959-967. 7. Beissinger, M. and J. Buchner. 1998. How chaperones fold proteins. Biol. Chem. 379:245-259. 8. Benedict, C. A., P. S. Norris, and C. F. Ware. 2002. To kill or be killed: viral evasion of apoptosis. Nat. Immunol. 3:1013-1018. 9. Beschin, A., M. Bilej, F. Hanssens, J. Raymakers, E. Van Dyck, H. Revets, L. Brys, J. Gomez, P. De Baetselier, and M. Timmermans. 1998. Identification and cloning of a glucan- and lipopolysaccharide-binding protein from Eisenia foetida earthworm involved in the activation of prophenoloxidase cascade. J. Biol. Chem. 273:24948-24954. 10. Blachere, N. E., Z. Li, R. Y. Chandawarkar, R. Suto, N. S. Jaikaria, S. Basu, H. Udono, and P. Srivastava. 1997. Heat shock protein-peptide complexes, reconstituted in vitro, elicit peptide-specific cytotoxic T lymphocyte response and tumor immunity. J. Exp. Med. 186:1315-1322. 11. Boigegrain, R. A., H. Mattras, M. Brehelin, P. Paroutaud, and M. A. Coletti-Previero. 1992. Insect immunity: two proteinase inhibitors from hemolymph of Locusta migratoria. Biochem. Biophys. Res. Commun. 189:790-793. 12. Boutros, M., H. Agaisse, and N. Perrimon. 2002. Sequential activation of signaling pathways during innate immune responses in Drosophila. Dev. Cell. 3:711-722. 13. Brehelin, M., R. A. Boigegrain, L. Drif, and M. A. Coletti-Previero. 1991. Purification of a protease inhibitor which controls prophenoloxidase activation in hemolymph of Locusta migratoria (insecta). Biochem. Biophys. Res. Commun. 179:841-846. 14. Bulet, P., C. Hetru, J. L. Dimarcq, and D. Hoffmann. 1999. Antimicrobial peptides in insects; structure and function. Dev. Comp. Immunol. 23:329-344. 15. Carroll, M. C. 1998. The role of complement and complement receptors in induction and regulation of immunity. Annual. Rev. Immunal. 16:545-568. 16. Carroll, M. C. and Janeway C.A. Jr. 1999. Innate immunity. Curr. Opin. Immunol. 11:12. 17. Chang, Y. S., C. F. Lo, S. E. Peng, K. F. Liu, C. H. Wang, C. F. Lo, and G. H. Kou. 2002. White spot syndrom virus (WSSV) PCR postive Artemia cysts yeild PCR negtive nauplii that fail to transmit WSSV to shrimp post larvae. Dis. Aquat. Org. 49:10. 18. Chen, H., J. M. Lee, Y. Wang, D. P. Huang, R. F. Ambinder, and S. D. Hayward. 1999. The Epstein-Barr virus latency BamHI-Q promoter is positively regulated by STATs and Zta interference with JAK/STAT activation leads to loss of BamHI-Q promoter activity. Proc. Natl. Acad. Sci. USA 96:9339-9344. 19. Chen, H., J. M. Lee, Y. Zong, M. Borowitz, M. H. Ng, R. F. Ambinder, and S. D. Hayward. 2001. Linkage between STAT ergulation and Epstein-Barr Virus gene expression in tumors. J. Virol. 75:2929 -2937 20. Chen, H., L. Hutt-Fletcher, L. Cao, and S. D. Hayward. 2003. A positive autoregulatory loop of LMP 1 expression and STAT activation in epithelial cells latently infected with Epstein-Barr virus. J. Virol. 77:4139-4148. 21. Chen, L. L., H. C. Wang, C. J. Huang, S. E. Peng, Y. G. Chen, C. J. Lin, W. Y. Chen, C. F. Dai, H. T. Yu, C. H. Wang, C. F. Lo, and G. H. Kou. 2002a. Transcriptional analysis of the DNA polymerase gene of shrimp white spot syndrome virus. Virology 301:136-147. 22. Chen, L. L., J. H. Leu, C. J. Huang, C. M. Cuou, S. M. Chen, C. H. Wang, C. F. Lo, and G. H. Kou. 2002b. Identification of a nucleocapsid protein (VP35) gene of shrimp white spot syndrome virus and characterization of the motif important for targeting VP35 to the nuclei of transfected insect cells. Virology 293:53. 23. Chou, H. Y., C. Y. Huang, C. H. Wang, H. C. Chiang, and C. F. Lo. 1995. Pathogenicity of a baculovirus infection causing white spot syndrome in cultured penaeid shrimp in Taiwan. Dis. Aquat. Org. 23:165-173. 24. Ciocca, D. R., S. Oesterreich, G. C. Chamness, W. L. McGuire, and S. A. Fuqua. 1993. Biological and clinical implications of heat shock protein 27,000 (Hsp27): a review. J. Natl. Cancer Inst. 85:1558-1570. 25. Clem, R. J., M. Fechheimer, and L. K. Miller. 1991. Prevention of apoptosis by a baculovirus gene during infection of insect cells. Science 254:1388-1390. 26. Copeland, N. G., D. J. Gilbert, C. Schindler, Z. Zhong, Z. Wen, J. E. J. Darnell, A. L. Mui, A. Miyajima, F. W. Quelle, and J. N. Ihle. 1995. Distribution of the mammalian Stat gene family in mouse chromosomes. Genomics 29:225-228. 27. Csermely, P., T. Schnaider, C. Soti, Z. Prohaszka, and G. Nardai. 1998. The 90-kDa molecular chaperone family: structure, function, and clinical applications. A comprehensive review. Pharmacol. Ther. 79:129-168. 28. dos Remedios, C. G., D. Chhabra, M. Kekic, I. V. Dedova, M. Tsubakihara, D. A. Berry, and N. J. Nosworthy. 2003. Actin binding proteins: regulation of cytoskeletal microfilaments. Physiol. Rev. 83:433-473. 29. Darnell, J. E. J., I. M. Kerr, and G. R. Stark. 1994. Jak-STAT pathways and transcriptional activation in response to IFNs and other extracellular signaling proteins. Science 264:1415-1421. 30. Dearolf, C. R. 1998. Fruit fly leukemia Biochim. Biophys. Acta. 1377:M13-M23 31. Dearolf, C. R. 1999. JAKs and STATs in invertebrate model organisms. Cell Mol. Life Sci. 55:1578-1584. 32. Dimopoulos, G., A. Richman, H. M. Muller, and F. C. Kafatos. 1997. Molecular immune responses of the mosquito Anopheles gambiae to bacteria and malaria parasites. Proc. Natl. Acad. Sci. USA 94:11508-11513. 33. Dive, C., C. D. Gregory, D. J. Phipps, D. L. Evans, A. E. Milner, and A. H. Wyllie. 1992. Analysis and discrimination of necrosis and apoptosis (programmed cell death) by multiparameter flow cytometry. Biochim. Biophys. Acta. 1133:275-285. 34. Durbin, J. E., R. Hackenmiller, M. C. Simon, and D. E. Levy. 1996. Targeted disruption of the mouse Stat1 gene results in compromised innate immunity to viral disease. Cell 84:443-450. 35. Duvic, B. and K. Soderhall. 1990. Purification and characterization of a beta-1,3-glucan binding protein from plasma of the crayfish Pacifastacus leniusculus. J. Biol. Chem. 265:9327-9332. 36. Duvic, B. and K. Soderhall. 1993. β-1-3-glucan binding proteins from the plasma of the freshwater crayfish Astacus astacus and Procambarus clarkii. J. Crustacean Biol. 13:403-408. 37. Engstrom, Y. 1999. Induction and regulation of antimicrobial peptides in Drosophila. Dev. Comp. Immunol. 23:345-358. 38. Garrido, C., S. Gurbuxani, L. Ravagnan, and G. Kroemer. 2001. Heat shock proteins: endogenous modulators of apoptotic cell death. Biochem. Biophys. Res. Commun. 286:433-442. 39. Garry, R. F., E. T. Ulug, and H. R. J. Bose. 1983. Induction of stress proteins in Sindbis virus- and vesicular stomatitis virus-infected cells. Virology 129:319-332. 40. Geisler, R., G. J. Rauch, H. Baier, F. van Bebber, L. Brobeta, M. P. Dekens, D. Gilmour, S. laser, L. nugge, H. abeck, K. ingst, S. olley, J. enan, A. rn, H. aut, D. shkari, F. derspacher, U. rtyn, S. uhauss, and P. ffter. 1999. A radiation hybrid map of the zebrafish genome. Nat. Genetics 23:86-89. 41. Groenen, P. J., K. B. Merck, W. W. de Jong, and H. Bloemendal. 1994. Structure and modifications of the junior chaperone alpha-crystallin. From lens transparency to molecular pathology. Eur. J. Biochem. 225:1-19. 42. Gross, P. S., T. C. Bartlett, C. L. Browdy, R. W. Chapman, and G. W. Warr. 2001. Immune gene discovery by expressed sequence tag analysis of hemocytes and hepatopancreas in the Pacific White Shrimp, Litopenaeus vannamei, and the Atlantic White Shrimp, L. setiferus. Dev. Comp. Immunol. 25:565-577. 43. Hergenhahn, H. G., A. Aspan, and K. Soderhall. 1987. Purification and characterization of a high-Mr proteinase inhibitor of pro-phenol oxidase activation from crayfish plasma. Biochem. J. 248:223-228. 44. Hoffmann, J. A. 1995. Innate immunity of insects. Curr. Opin. Immunol. 7:4-10. 45. Hoffmann, J. A., J. M. Reichhart, and C. Hetru. 1996. Innate immunity in higher insects. Curr. Opin. Immunol. 8:8-13. 46. Holmblad, T., P. O. Thornqvist, K. Soderhall, and M. W. Johansson. 1997. Identification and cloning of an integrin beta subunit from hemocytes of the freshwater crayfish Pacifastacus leniusculus. J. Exp. Zool. 277:255-261. 47. Horvath, C. M. 2000. STAT proteins and transcriptional responses to extracellular signals. Trends. Biochem. Sci. 25:496-502. 48. Hou, X. S. and N. Perrimon. 1997. The JAK-STAT pathway in Drosophila. Cell 13:105-110. 49. Hu, J. and C. Seeger. 1996. Hsp90 is required for the activity of a hepatitis B virus reverse transcriptase. Proc. Natl. Acad. Sci. USA 93:1060-1064. 50. Hu, J., D. O. Toft, and C. Seeger. 1997. Hepadnavirus assembly and reverse transcription require a multi-component chaperone complex which is incorporated into nucleocapsids. EMBO J. 16:59-68. 51. Huang, C., X. Zhang, Q. Lin, X. Xu, and C. L. Hew. 2002a. Proteomic analysis of shrimp white spot syndrome viral proteins and characterization of a novel envelope protein VP466. Mol. Cell Proteomics 1:223-231. 52. Huang, C., X. Zhang, Q. Lin, X. Xu, and C. L. Hew. 2002b. Characterization of a novel envelope protein (VP281) of shrimp white spot syndrome virus by mass spectrometry. J. Gen. Virol. 83:2392. 53. Imler, J. L. and J. A. Hoffmann. 2000. Signaling mechanisms in the antimicrobial host defense of Drosophila. Curr. Opin. Microbiol. 3:16-22. 54. Inoue, S., B. H. Nam, I. Hirono, and T. Aoki. 1997. A survey of expressed genes in Japanese flounder (Paralichthys olivaceus) liver and spleen. Mol. Mar. Biol. Biotechnol. 6:376-380. 55. Iwanaga, S. 1993. The limulus clotting reaction. Curr. Opin. Immunol. 5:74-82. 56. Iwanaga, S., S. Kawabata, and T. Muta. 1998. New types of clotting factors and defense molecules found in horseshoe crab hemolymph: their structures and functions. J. Biochem. (tokyo) 123:1-15. 57. Johansson, M. W., P. Keyser, and K. Soderhall. 1994. Purification and cDNA cloning of a four-domain Kazal proteinase inhibitor from crayfish blood cells. Eur. J. Biochem. 223:384-394. 58. Johansson, M. W., P. Keyser, K. Sritunyalucksana, and K. Soderhall. 2000. Crustacean haemocyte and haematopoisis. Aquaculture 191:45-52. 59. Kang, D., G. Liu, A. Lundstrom, E. Gelius, and H. Steiner. 1998. A peptidoglycan recognition protein in innate immunity conserved from insects to humans. Proc. Natl. Acad. Sci. USA 95:10078-10082. 60. Kanost, M. R. 1999. Serine proteinase inhibitors in arthropod immunity. Dev. Comp. Immunol. 23:291-301. 61. Kawata, T., A. Shevchenko, M. Fukuzawa, K. A. Jermyn, N. F. Totty, N. V. Zhukovskaya, A. E. Sterling, M. Mann, and J. G. Williams. 1997. SH2 signaling in a lower eukaryote: a STAT protein that regulates stalk cell differentiation in dictyostelium. Cell 89:909-916. 62. Kellenberger, C., C. Boudier, I. Bermudez, J. G. Bieth, B. Luu, and H. Hietter. 1995. Serine protease inhibition by insect peptides containing a cysteine knot and a triple-stranded beta-sheet. J. Biol. Chem. 270:25514-25519. 63. Kiang, J. G. and G. C. Tsokos. 1998. Heat shock protein 70 kDa: molecular biology, biochemistry, and physiology. Pharmacol. Ther. 80:183-201. 64. Lee, S. Y., R. Wang, and K. Soderhall. 2000. A lipopolysaccharide- and beta-1,3-glucan-binding protein from hemocytes of the freshwater crayfish Pacifastacus leniusculus. Purification, characterization, and cDNA cloning. J. Biol. Chem. 275:1337-1343. 65. Lee, S. Y. and K. Soderhall. 2001. Characterization of a pattern recognition protein, a masquerade-like protein, in the freshwater crayfish Pacifastacus leniusculus. J. Immunol. 166:7319-7326. 66. Lee, W. J., J. D. Lee, V. V. Kravchenko, R. J. Ulevich, and P. T. Brey. 1996. Purification and molecular cloning of an inducible gram-negative bacteria-binding protein from the silkworm, Bombyx mori. Proc. Natl. Acad. Sci. USA 93:7888-7893. 67. Levy, D. E. and J. E. J. Darnell. 2002. Stats: transcriptional control and biological impact. Nat. Rev. Mol. Cell Biol. 3:651-662. 68. Lewis, J., A. Devin, A. Miller, Y. Lin, Y. Rodriguez, L. Neckers, and Z. G. Liu. 2000. Disruption of hsp90 function results in degradation of the death domain kinase, receptor-interacting protein (RIP), and blockage of tumor necrosis factor-induced nuclear factor-kappaB activation. J. Biol. Chem. 275:10519-10526. 69. Liang, Z., L. Sottrup-Jensen, A. Aspan, M. Hall, and K. Soderhall. 1997. Pacifastin, a novel 155-kDa heterodimeric proteinase inhibitor containing a unique transferrin chain. Proc. Natl. Acad. Sci. USA 94:6682-6687. 70. Lin, K. M., B. Lin, I. Y. Lian, R. Mestril, I. E. Scheffler, and W. H. Dillmann. 2001. Combined and individual mitochondrial HSP60 and HSP 10 expression in cardiac myocytes protects mitochondrial function and prevents apoptotic cell deaths induced by simulated ischemia-reoxygenation. Circulation. 103:1789-1792. 71. Lin, S. T., Y. S. Chang, H. C. Wang, H. F. Tzeng, Z. F. Chang, J. Y. Lin, C. H. Wang, C. F. Lo, and G. H. Kou. 2002. Ribonucleotide reductase of shrimp white spot syndrome virus (WSSV): expression and enzymatic activity in a baculovirus/insect cell system and WSSV-infected shrimp. Virology 304:282-290. 72. Linquist, S. and E. A. Craig. 1988. The heat shock proteins. Annu. Rev. Genet. 22:631-677. 73. Lo, C. F., C. H. Ho, S. E. Peng, C. H. Chen, H. C. Hsu, Y. L. Chiu, C. F. Chang, K. F. Liu, M. S. Su, C. H. Wang, and G. H. Kou. 1996. White spot syndrome baculovirus (WSBV) detected in culture and capture shirmp, crabs and arthopods. Dis. Aquat. Org. 27:225. 74. Lo, C. F., H. C. Hsu, M. F. Tsai, C. H. Ho, S. E. Peng, G. H. Kou, and D. V. Lightener. 1999. Sepecific genomic DNA fragment analysis of different geographical clinical samples of shrimp white spot syndrome virus. Dis. Aquat. Org. 35:185. 75. Malik, Z., S. Amir, G. Pal, Z. Buzas, E. Varallyay, J. Antal, Z. Szilagyi, K. Vekey, B. Asboth, A. Patthy, and A. Patthy. 1999. Proteinase inhibitors from desert locust, Schistocerca gregaria: engineering of both P(1) and P(1)' residues converts a potent chymotrypsin inhibitor to a potent trypsin inhibitor. Biochim. Biophys. Acta. 1434:143-150. 76. Medzhitov, R. and Janeway C.A.Jr. 1997. Innate immunity: the virtues of a nonclonal system of recognition. Cell 91:295-8. 77. Meraz, M. A., J. M. White, K. C. Sheehan, E. A. Bach, S. J. Rodig, A. S. Dighe, D. H. Kaplan, J. K. Riley, A. C. Greenlund, D. Campbell, K. Carver-Moore, R. N. DuBois, R. Clark, M. Aguet, and R. D. Schreiber. 1996. Targeted disruption of the Stat1 gene in mice reveals unexpected physiologic specificity in the JAK-STAT signaling pathway. Cell 84:431-442. 78. Morimoto, R. I. and M. G. Santoro. 1998. Stress-inducible response and heat shock proteins: new pharmacologic targets for cytoprotection. Nat. Biotechnol. 16:833-838. 79. Murphy, F. A., C. M. Facquet, D. H. L. Bishop, S. A. Ghabrial, A. W. Jarvis, G. P. Martelli, M. C. Tung, and M. D. Summer. 1995. Classfication and nonmenculture of viruses. Arch. Virol. suppl. 10:1-568. 80. Muta, T., T. Nakamura, R. Hashimoto, T. Morita, and S. Iwanaga. 1993. Limulus proclotting enzyme. Methods. Enzymol. 223:352-358. 81. Nakano, H., H. koube, S. Umezaea, K. Momoyama, M. Hiraoka, K. Inoye, and N. Oseko. 1994. Mass mortalities of cultured kuruma shrimp, Penaeus japonicus, in Japan in 1993: epizootiological survey and infection trials. fish pathol. 29:235-239. 82. Natori, S. and T. Kubo. 1996. New directions in invertebrate Immunology. SOS, Fair Haven. 83. O'Shea, J. J. 1997. Jaks, STATs, cytokine signal transduction, and immunoregulation: are we there yet Immunity 7:1-11. 84. Ochiai, M. and M. Ashida. 1988. Purification of a beta-1, 3-glucan recognition protein in the prophenoloxidase activating system from hemolymph of the silkworm, Bombyx mori. J. Biol. Chem. 263:12056-12062. 85. Ochiai, M. and M. Ashida. 1999. A pattern recognition protein for peptidoglycan. Cloning the cDNA and the gene of the silkworm, Bombyx mori. J. Biol. Chem. 274:11858. 86. Pandey, P., A. Saleh, A. Nakazawa, S. Kumar, S. M. Srinivasula, V. Kumar, R. Weichselbaum, C. Nalin, E. S. Alnemri, D. Kufe, and S. Kharbanda. 2000. Negative regulation of cytochrome c-mediated oligomerization of Apaf-1 and activation of procaspase-9 by heat shock protein 90. EMBO J. 19:4310-4322. 87. Park, C., S. Li, E. Cha, and C. Schindler. 2000. Immune response in Stat2 knockout mice. Immunity 13:795-804. 88. Perazzolo, L. M. and M. A. Barracco. 1997. The prophenoloxidase activating system of the shrimp Penaeus paulensis and associated factors. Dev. Comp. Immunol. 21:385-395. 89. Ray, C. A., R. A. Black, S. R. Kronheim, T. A. Greenstreet, P. R. Sleath, G. S. Salvesen, and D. J. Pickup. 1992. Viral inhibition of inflammation: cowpox virus encodes an inhibitor of the interleukin-1 beta converting enzyme. Cell 69:597-604. 90. Robertson, H. M., R. Martos, C. R. Sears, E. Z. Todres, K. K. Walden, and J. B. Nardi. 1999. Diversity of odourant binding proteins revealed by an expressed sequence tag project on male Manduca sexta moth antennae. Insect. Mol. Biol. 8:501-518. 91. Rojtinnakorn, J., I. Hirono, T. Itami, Y. Takahashi, and T. Aoki. 2001. Gene expression in haemocytes of kuruma prawn, Penaeus japonicus, in response to infection with WSSV by EST approach. Fish Shellfish Immunol. 13:69-83. 92. Rojtinnakorn, J., I. Hirono, T. Itami, Y. Takahashi, and T. Aoki. 2002. Gene expression in haemocytes of kuruma prawn, Penaeus japonicus, in response to infection with WSSV by EST approach. Fish Shellfish Immunol. 13:69-83. 93. Rosenberry, B. World shirmp farming. 2000. Ref Type: Thesis/Dissertation 94. Rossi, A., G. Elia, and M. G. Santoro. 1998. Activation of the heat shock factor 1 by serine protease inhibitors. An effect associated with nuclear factor-kappaB inhibition. J. Biol. Chem. 273:16446-16452. 95. Ruoslahti, E. 1996. RGD and other recognition sequences for integrins. Annu. Rev. Cell Dev. Biol. 12:697-715. 96. Salvesen, G. S. and V. M. Dixit. 1997. Caspases: intracellular signaling by proteolysis. Cell 91:443-446. 97. Samali, A., J. Cai, B. Zhivotovsky, D. P. Jones, and S. Orrenius. 1999. Presence of a pre-apoptotic complex of pro-caspase-3, Hsp60 and Hsp10 in the mitochondrial fraction of jurkat cells. EMBO J. 18:2040-2048. 98. Santoro, M. G. 1997. Antiviral activity of cyclopentenone prostanoids. Trends. Microbio. 5:276-281. 99. Seki, N., T. Muta, T. Oda, D. Iwaki, K. Kuma, T. Miyata, and S. Iwanaga. 1994. Horseshoe crab (1,3)-beta-D-glucan-sensitive coagulation factor G. A serine protease zymogen heterodimer with similarities to beta-glucan-binding proteins. J. Biol. Chem. 269:1370-1374. 100. Shai, Y. 1998. Mode of action of antibacteria peptides., p. 111-134. Molecular Mechanism of Immune Response in Insect. Chapman and Hall, London. 101. Simonet, G., I. Claeys, H. Vanderperren, T. November, A. De Loof, and J. Vanden Broeck. 2002a. cDNA cloning of two different serine protease inhibitor precursors in the migratory locust, Locusta migratoria. Insect. Mol. Biol. 11:249-256. 102. Simonet, G., I. Claeys, T. November, S. Wataleb, T. Janssen, R. Maes, A. De Loof, and J. Vanden Broeck. 2002b. Cloning of two cDNAs encoding isoforms of a pacifastin-related precursor polypeptide in the desert locust, Schistocerca gregaria: analysis of stage- and tissue-dependent expression. Insect. Mol. Biol. 11:353-360. 103. Simonet, G., I. Claeys, and J. Vanden Broeck. 2002c. Structural and functional properties of a novel serine protease inhibiting peptide family in arthropods. Comp. Biochem. Physiol. B Biochem. Mol. Biol. 132:247-255. 104. Singh, S. and B. B. Aggarwal. 1995. Activation of transcription factor NF-kappa B is suppressed by curcumin (diferuloylmethane). J. Biol. Chem. 270:30235. 105. Soderhall, K. and L. Cenrenius. 1992. Crustacean immunity. Annu. Rev. Fish Dis. 2:3-23. 106. Soderhall, K. and L. Cenrenius. 1998. Role of the prophenoloxidase-activating system in invertebrate immunity. Dev. Comp. Immunol. 10:23-28. 107. Srivastava, P. 2002. Roles of heat-shock proteins in innate and adaptive immunity. Nat. Rev. Immunol. 2:185-194. 108. Stark, G. R., I. M. Kerr, B. R. Williams, R. H. Silverman, and R. D. Schreiber. 1998. How cells respond to interferons. Annu. Rev. Biochem. 67:227-264. 109. Steller, H. 1995. Mechanisms and genes of cellular suicide. Science 267:1445-1449. 110. Sugumaran, M., S. Tan, and H. L. Sun. 1996. Tyrosinase-catalyzed oxidation of 3,4-dihydroxyphenylglycine. Arch. Biochem. Biophys. 329:175-180. 111. Sun, S. C., I. Linstrom, H. G. Boman, I. Faye, and O. Schmidt. 1990. Hemolin: an insect-immune protein belonging to the immunoglobulin superfamily. Science 250:1729-1732. 112. Supungul, P., S. Klinbunga, R. Pichyangkura, S. Jitrapakdee, I. Hirono, T. Aoki, and A. Tassanakornjon. 2002. Identification of immune-related genes in hemocytes of black tiger shrimp (penaeus monodon). Mar. Biotechnol. 4:487-494. 113. Suto, R. and P. K. Srivastava. 1995. A mechanism for the specific immunogenicity of heat shock protein-chaperoned peptides. Science 269:1585-1588. 114. Suzue, K., X. Zhou, H. N. Eisen, and R. A. Young. 1997. Heat shock fusion proteins as vehicles for antigen delivery into the major histocompatibility complex class I presentation pathway. Proc. Natl. Acad. Sci. USA 94:13146-13151. 115. Thornqvist, P. O., M. W. Johansson, and K. Soderhall. 1994. Opsonic activity of cell adhesion proteins and beta-1,3-glucan binding proteins from two crustaceans. Dev. Comp. Immunol. 18:3-12. 116. Tsai, M. F., C. F. Lo, M. C. van Hulten, H. F. Tzeng, C. M. Chou, C. Y. Huang, C. H. Wang, J. Y. Lin, J. M. Vlak, and G. H. Kou. 2000a. trnscriptional analysis of the ribonnucleotide reductase genes of shrimp white spot syndrome virus. Virology 277:92-99. 117. Tsai, M. F., H. T. Yu, H. F. Tzeng, J. H. Leu, C. M. Chou, C. J. Huang, C. H. Wang, J. Y. Lin, G. H. Kou, and C. F. Lo. 2000b. identification and characterization of a shrimp white spot syndrome virus (WSSV) gene that encodes a novel chimeric polypeptide of cellular-type thymidine kinase and thymidylate kinase. Virology 277:110. 118. Tulina, N. and E. Matunis. 2001. Control of stem cell self-renewal in Drosophila spermatogenesis by JAK-STAT signaling. Science 294:2546-2549. 119. Tzeng, H. F., Z. F. Chang, S. E. Peng, C. H. Wang, J. Y. Lin, C. F. Lo, and G. H. Kou. 2002. Chimeric polypeptide of thymidine kinase and thymidylate kinase of shrimp white spot syndrome virus: thymidine kinase activity of the recombinant protein expressed in a baculovirus/insect cell system. Virology 299:248-255. 120. van de Braak, C. B., M. H. Botterblom, E. A. Huisman, J. H. Rombout, and W. P. van der Knaap. 2002. Preliminary study on haemocyte response to white spot syndrome virus infection in black tiger shrimp Penaeus monodon. Dis. Aquat. Org. 51:149-155. 121. van Hulten, M. C., M. F. Tsai, C. A. Schipper, C. F. Lo, G. H. Kou, and J. M. Vlak. 2000a. Analysis of a genomic segment of white spot syndrome virus of shrimp containing ribonucleotide reductase genes and repeat regions. J. Gen. Virol. 81:307-316. 122. van Hulten, M. C., M. Westenberg, S. D. Goodall, and J. M. Vlak. 2000b. Identification of two major virion protein genes of white spot syndrome virus of shrimp. Virology 266:227-236. 123. van Hulten, M. C., J. Witteveldt, S. Peters, N. Kloosterboer, R. Tarchini, M. Fiers, H. Sandbrink, R. K. Lankhorst, and J. M. Vlak. 2001. The white spot syndrome virus DNA genome sequence. Virology 286:7-22. 124. van Hulten, M. C., M. Reijns, A. M. Vermeesch, F. Zandbergen, and J. M. Vlak. 2002. Identification of VP 19 and VP15 of white spot syndrome virus (WSSV) and glycosylation status of the WSSV major structural proteins. J. Gen. Virol. 83:265. 125. Vanden Broeck, J. 2001. Neuropeptides and their precursors in the fruitfly, Drosophila melanogaster. Peptides. 22:241-254. 126. Vargas-Albores, F., M. A. Guzman, and J. L. A. Ochoa. 1993. An anticoagulant solution for hemolymph collection and prophenoloxidase studies of penaeid shrimp (Penaeus californiensis). Comp. Biochem. Physiol. 106a:299-303. 127. Wang, C. H., C. F. Lo, J. H. leu, C. M. Chou, P. Y. Yeh, H. Y. Chou, M. C. Tung, C. F. Chang, M. S. Su, and G. H. Kou. 1995. Purification and genomic analysis of baculovirus associated with white spot syndrom virus. Dis. Aquat. Org. 23:239-242. 128. Wang, R., Z. Liang, and K. Soderhall. 2001. A transglutaminase involved in the coagulation system of the freshwater crayfish, Pacifastacus leniusculus. Tissue localisation and cDNA clo. Fish Shellfish Immunol. 11:623-637. 129. White, K., E. Tahaoglu, and H. Steller. 1996. Cell killing by the Drosophila gene reaper. Science 271:805-807. 130. Wyllie, A. H. 1980. Glucocorticoid-induced thymocyte apoptosis is associated with endogenous endonuclease activation. Nature 284:555-556. 131. Yan, R., S. Small, C. Desplan, C. R. Dearolf, and J. E. J. Darnell. 1996. Identification of a Stat gene that functions in Drosophila development. Cell 84:421-430. 132. Yang, F., W. Wang, R. Z. Chen, and X. Xu. 1997. A simple and efficient method for purification of prawn baculovirus DNA. J. Virol. Methods 67:1-4. 133. Yoshida, H., K. Kinoshita, and M. Ashida. 1996. Purification of a peptidoglycan recognition protein from hemolymph of the silkworm, Bombyx mori. J. Biol. Chem. 271:13854-13860. 134. Yu, X. Q., H. Jiang, and M. R. Kanost. 2003. Nonproteolytic serine proteinase homologs are involved in prophenoloxidase activation in the tobacco hornworm, Manduca sexta. Insect. Biochem. Mol. Biol. 33:197-208. 135. Zhang, X., C. Huang, X. Xu, and C. L. Hew. 2002. Transcription and identification of an envelope protein gene (p22) from shrimp white spot syndrome virus. J. Gen. Virol. 83:477. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75410 | - |
| dc.description.abstract | 由白點症病毒(white spot syndrome virus; WSSV)感染所引起的養殖蝦急性感染症-蝦類白點症(white spot syndrome; WSS),是近十年來影響蝦類養殖業最嚴重的重要疾病。雖然目前已對白點症病毒的研究陸續獲致不少的成果,但至今對此病卻尚無一套確切有效的治療策略與方法。因此在本研究中,從寄主的防禦機制切入,藉由分析數個草蝦基因的轉錄表現探討其受白點症病毒感染之影響,並進而推測其可能作用的機制。本研究中,共探討了19個草蝦防禦相關基因,其中2個基因是經由本研究選殖所得。經過分類整理後,以WSSV感染草蝦為模式,利用反轉錄?-聚合?鏈反應(RT-PCR)分析數個基因在不同病毒感染時序轉錄表現。依據其表現型態及該分子參與的反應路徑,推測出有數個可能與白點症病毒感染後與寄主防禦機制相關且部分基因則與病毒感染後之時序而呈現表現量的變化,其中原酚氧化?活化系統及JAK/STAT訊息傳遞路徑有被病毒感染而誘發其活性以對抗病毒感染,而凝血機制及抗菌勝?形成的防禦機制反而因病毒感染而抑制。此外,藉由分析在本研究中選殖到的草蝦STAT分子完整cDNA序列及草蝦Pacifastin-related precusor部分cDNA序列發現前者在演化上具有高度保守性。 由本研究結果所提供的基礎資訊,期望有助於加速找出或擬訂出抗白點症病毒的策略。 | zh_TW |
| dc.description.abstract | Penaeus monodon is a host species to white spot syndrome (WSS), a serious disease that has impacted the shrimp farming industry all over the world. The present study investigates P. monodon's defense mechanisms against the causative pathogen, the large, double-stranded, white spot syndrome virus (WSSV). Temporal analysis of 19 genes that are related to biodefense was performed in WSSV-infected P monodon by RT-PCR, and results suggested several defense mechanisms that may respond to WSSV infection, including the prophenoloxidase activating system and the JAK/STAT signal transduction pathway. On the other hand, the clotting system and expression of antimicrobial peptide genes seem to be inhibited by WSSV infection. Of these 19 genes, two genes that code for the signal transducer and activator of transcription (STAT) and pacifastin-related precursor of P. monodon were first reported in this study. Thus, the P. monodon cDNAs of these two genes were subsequently cloned. The full-length cDNA sequences of STAT and the partial cDNA sequences of pacifastin-related precursor were determined. The cDNA for PmSTAT is 2322 bases in length and its coding region encodes a polypeptide of 744 amino acids. Comparison with the STAT from many other species suggests that evolutionarily, PmSTAT is highly conserved. Analysis of the deduced amino acid sequence of PmPP, a predicted proteinase inhibitor precursor, indicates it contains 9 or more proteinase inhibitors domains: 7 pacifastin light-chain proteinase inhibitor domains and at least 2 kunitz-type serine proteinase inhibitor domains. | en |
| dc.description.provenance | Made available in DSpace on 2021-07-01T08:13:04Z (GMT). No. of bitstreams: 0 Previous issue date: 2003 | en |
| dc.description.tableofcontents | 前言………………………………………………………………………1 材料與方法………………………………………………………………15 1 蝦類防禦機制相關基因之獲得………………………………………15 1.1 GenBank搜尋………………………………………………………15 1.2 以聚合?鏈反應進行選殖(PCR based cloning)……………15 2 草蝦生物防禦相關基因表現時序分析………………………………16 2.1 不同感染時序之RNA製備…………………………………………16 2.2 反轉錄聚合?鏈反應……………………………………………16 3 草蝦STAT基因及PmPP基因之選殖……………………………………18 3.1 3'端(加聚腺嘌呤位置)快速增殖cDNA末端…………………18 3.2 5'端(轉錄起始點)快速增殖cDNA末端………………………18 4 序列比對及分析………………………………………………………19 結果………………………………………………………………………20 蝦類生物防禦相關基因(EST)之分類………………………………20 草蝦生物防禦相關基因轉錄表現………………………………………21 草蝦STAT基因之選殖……………………………………………………23 草蝦Pacifastin-light chain基因之選殖……………………………24 討論………………………………………………………………………26 結論………………………………………………………………………41 參考文獻…………………………………………………………………42 圖表………………………………………………………………………54 附錄………………………………………………………………………71 | |
| dc.language.iso | zh-TW | |
| dc.title | 蝦白點症病毒感染後草蝦基因表現之分析 | zh_TW |
| dc.title | Analyze genes expression in Peneaus monodon after WSSV infection | en |
| dc.date.schoolyear | 91-2 | |
| dc.description.degree | 碩士 | |
| dc.relation.page | 70 | |
| dc.rights.note | 未授權 | |
| dc.contributor.author-dept | 生命科學院 | zh_TW |
| dc.contributor.author-dept | 動物學研究所 | zh_TW |
| 顯示於系所單位: | 動物學研究所 | |
文件中的檔案:
沒有與此文件相關的檔案。
系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。
