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請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/45745
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor張麗冠(Li-Kwan Chang)
dc.contributor.authorWei-Tao Shenen
dc.contributor.author沈維道zh_TW
dc.date.accessioned2021-06-15T04:45:26Z-
dc.date.available2015-08-09
dc.date.copyright2010-08-09
dc.date.issued2010
dc.date.submitted2010-08-05
dc.identifier.citationBhattacharya R, Senbanerjee S, Lin Z, Mir S, Hamik A, Wang P, Mukherjee P, Mukhopadhyay D, Jain MK (2005) Inhibition of vascular permeability factor/vascular endothelial growth factor-mediated angiogenesis by the Kruppel-like factor KLF2. J Biol Chem 280(32): 28848-28851
Bieker JJ (2001) Kruppel-like factors: three fingers in many pies. J Biol Chem 276(37): 34355-34358
Botella LM, Sanchez-Elsner T, Sanz-Rodriguez F, Kojima S, Shimada J, Guerrero-Esteo M, Cooreman MP, Ratziu V, Langa C, Vary CP, Ramirez JR, Friedman S, Bernabeu C (2002) Transcriptional activation of endoglin and transforming growth factor-beta signaling components by cooperative interaction between Sp1 and KLF6: their potential role in the response to vascular injury. Blood 100(12): 4001-4010
Brown AE, Crisanti A, Catteruccia F (2003) Comparative analysis of DNA vectors at mediating RNAi in Anopheles mosquito cells and larvae. J Exp Biol 206: 1817-1823
Carlson CM, Endrizzi BT, Wu J, Ding X, Weinreich MA, Walsh ER, Wani MA, Lingrel JB, Hogquist KA, Jameson SC (2006) Kruppel-like factor 2 regulates thymocyte and T-cell migration. Nature 442(7100): 299-302
Chang LK, Chung JY, Hong YR, Ichimura T, Nakao M, Liu ST (2005) Activation of Sp1-mediated transcription by Rta of Epstein-Barr virus via an interaction with MCAF1. Nucleic Acids Res 33(20): 6528-6539
Chang YS, Peng SE, Wang HC, Hsu HC, Ho CH, Wang CH, Wang SY, Lo CF, Kou GH (2001) Sequencing and amplified restriction fragment length polymorphism analysis of ribonucleotide reductase large subunit gene of the white spot syndrome virus in blue crab (Callinectes sapidus) from American Coastal Waters. Mar Biotechnol (NY) 3(2): 163-171
Chen LL, Leu JH, Huang CJ, Chou CM, Chen SM, Wang CH, Lo CF, Kou GH (2002) Identification of a nucleocapsid protein (VP35) gene of shrimp white spot syndrome virus and characterization of the motif important for targting VP35 to the nuclei of transfected insect cells. Virology 293: 44-53
Chen LL, Lo C-F, Chiu Y-L, Chang C-F, Kou G-H (2000) Natural and experimental infection of white spot syndrome virus (WSSV) in benthic larvae of mud crab Scylla serrata. Dis Aquat Organ 40(2): 157-161
Chen Z, Lei T, Chen X, Zhang J, Yu A, Long Q, Long H, Jin D, Gan L, Yang Z (2010) Porcine KLF gene family: Structure, mapping, and phylogenetic analysis. Genomics 95(2): 111-119
Chou HY, Huang CY, Wang CH, Chiang HC, Lo CF (1995) Pathogenicity of a baculovirus infection causing white spot syndrome in cultured penaeid shrimp in Taiwan. Dis Aquat Organ 23(3): 165-173
Dang DT, Bachman KE, Mahatan CS, Dang LH, Giardiello FM, Yang VW (2000) Decreased expression of the gut-enriched Kruppel-like factor gene in intestinal adenomas of multiple intestinal neoplasia mice and in colonic adenomas of familial adenomatous polyposis patients. FEBS Lett 476(3): 203-207
de Wet JR, Wood KV, DeLuca M, Helinski DR, Subramani S (1987) Firefly luciferase gene: structure and expression in mammalian cells. Mol Cell Biol 7(2): 725-737
Dynan WS, Tjian R (1983) The promoter-specific transcription factor Sp1 binds to upstream sequences in the SV40 early promoter. Cell 35(1): 79-87
Feinberg MW, Wara AK, Cao Z, Lebedeva MA, Rosenbauer F, Iwasaki H, Hirai H, Katz JP, Haspel RL, Gray S, Akashi K, Segre J, Kaestner KH, Tenen DG, Jain MK (2007) The Kruppel-like factor KLF4 is a critical regulator of monocyte differentiation. EMBO J 26(18): 4138-4148
Feng WC, Southwood CM, Bieker JJ (1994) Analyses of beta-thalassemia mutant DNA interactions with erythroid Kruppel-like factor (EKLF), an erythroid cell-specific transcription factor J Biol Chem 14(2): 1493-1500
Fire A, Xu S, Montgomery MK, Kostas SA, Driver SE, Mello CC (1998) Potent and specific genetic interference by double-stranded RNA in Caenorhabditis elegans. Nature 391(6669): 806-811
Flegel TW (1997) Special topic review: Major viral diseases of the black tiger prawn (Penaeus monodon) in Thailand. World J Microbiol Biotech 13: 422-433
Flores-Jasso CF, Valdes VJ, Sampieri A, Valadez-Graham V, Recillas-Targa F, Vaca L (2004) Silencing structural and nonstructural genes in baculovirus by RNA interference. Virus Res 102(1): 75-84
Friedman A, Perrimon N (2004) Genome-wide high-throughput screens in functional genomics. Curr Opin Genet Dev 14(5): 470-476
Fulk M, Main KL (1992) Introduction. In: W. Fulks and K. L. Main (Eds.).Proceedings of a workshop of the international conference on diseases of cultured penaeid shrimp in Asia and the United States. Honolulu, Hawaii, U.S.A. 3-33
Gitlin L, Karelsky S, Andino R (2002) Short interfering RNA confers intracellular antiviral immunity in human cells. Nature 418(6896): 430-434
Goto A, Blandin S, Royet J, Reichhart JM, Levashina EA (2003) Silencing of Toll pathway components by direct injection of double-stranded RNA into Drosophila adult flies. Nucleic Acids Res 31(22): 6619-6623
Gray S, Wang B, Orihuela Y, Hong EG, Fisch S, Haldar S, Cline GW, Kim JK, Peroni OD, Kahn BB, Jain MK (2007) Regulation of gluconeogenesis by Kruppel-like factor 15. Cell Metab 5(4): 305-312
Hammond SM, Bernstein E, Beach D, Hannon GJ (2000) An RNA-directed nuclease mediates post-transcriptional gene silencing in Drosophila cells. Nature 404(6775): 293-296
Hammond SM, Boettcher S, Caudy AA, Kobayashi R, Hannon GJ (2001) Argonaute2, a link between genetic and biochemical analyses of RNAi. Science 293(5532): 1146-1150
Hasson KW, Lightner DV, Poulos BT, Redman RM, White BL, Brock JA (1995) Taura syndrome in Penaeus vannamei: demonstration of a viral etiology. Dis Aquat Organ 23: 115-126
Inouye K, Miwa S, Oseko N, Nakano H, Kimura T, Momoyama K, Hiraoka M, (1994) Mass mortalities of cultured kuruma shrimp Penaeus japonicus in Japan in 1993: Electron microscopic evidence of the causative virus. Fish Pathol 29: 149 ~ 158
Inouye K, Yamano K, Ikeda N, Kimura T, Nakano H, Momoyama K, Kobayashi J, Miyajima S (1996) The penaeid rod-shaped DNA virus (PRDV), which causes penaeid acute viremia (PAV). Fish Pathol 31: 39 ~ 45
Kaczynski J, Cook T, Urrutia R (2003) Sp1- and Kruppel-like transcription factors. Genome Biol 4(2): 206
Kadam S, McAlpine GS, Phelan ML, Kingston RE, Jones KA, Emerson BM (2000) Functional selectivity of recombinant mammalian SWI/SNF subunits. Genes Dev 14(19): 2441-2451
Karunasagar I, Otta SK (1998) Disease problems affecting cultured penaeid shrimp in India. Fish Pathol 33: 413 ~ 419
Karunasagar I, Otta SK, Karunasagar I (1997) Histopathological and bacteriological study of white spot syndrome of Penaeus monodon along the west coast of India. Aquaculture '95. World Aquaculture Society, Baton Rouge, Louisina, USA 153: 9-13
Kawai-Kowase K, Kurabayashi M, Hoshino Y, Ohyama Y, Nagai R (1999) Transcriptional activation of the zinc finger transcription factor BTEB2 gene by Egr-1 through mitogen-activated protein kinase pathways in vascular smooth muscle cells. Circ Res 85(9): 787-795
Khalil MI, Hay J, Ruyechan WT (2008) Cellular transcription factors Sp1 and Sp3 suppress varicella-zoster virus origin-dependent DNA replication. J Virol 82(23): 11723-11733
Kim Y, Ratziu V, Choi SG, Lalazar A, Theiss G, Dang Q, Kim SJ, Friedman SL (1998) Transcriptional activation of transforming growth factor beta1 and its receptors by the Kruppel-like factor Zf9/core promoter-binding protein and Sp1. Potential mechanisms for autocrine fibrogenesis in response to injury. J Biol Chem 273(50): 33750-33758
Kojima S, Hayashi S, Shimokado K, Suzuki Y, Shimada J, Crippa MP, Friedman SL (2000) Transcriptional activation of urokinase by the Kruppel-like factor Zf9/COPEB activates latent TGF-beta1 in vascular endothelial cells. Blood 95(4): 1309-1316
Laub F, Lei L, Sumiyoshi H, Kajimura D, Dragomir C, Smaldone S, Puche AC, Petros TJ, Mason C, Parada LF, Ramirez F (2005) Transcription factor KLF7 is important for neuronal morphogenesis in selected regions of the nervous system. Mol Cell Biol 25(13): 5699-5711
Lecellier CH, Voinnet O (2004) RNA silencing: no mercy for viruses? Immunol Rev 198: 285-303
Liao IC (1989a) Penaeus monodon cluture in Taiwan: Through two decades of growth. Int J Aquacult Fish Technol 1: 16-24
Liao IC (1989b) Taiwanese shrimp culture: A molting industry. In: K. Chauvun, P. Menesses, W. Chauvin and A. Cuccia, eds., Proc. Shrimp World IV (The Fourth Shrimp World Marketing Conference). Shrimp World Incorporated, New Orleans, Louisiana, U.S,A,:55-83
Liao IC, Huang TL, Katsutani K (1969) A preliminary report on artificial propagation of Penaeus monodon (Fabricius). Jt Comm Rural Reconstr Fish Ser 8: 67-71 (in Chinese with English abstract)
Licht JD, Grossel MJ, Figge J, Hansen UM (1990) Drosophila Kruppel protein is a transcriptional repressor. Nature 346(6279): 76-79
Lightner DV (1996) A handbook of pathology and diagnostic procedures for diseases of penaeid shrimp. Vol. World Aquaculture Society, Baton Rouge, Louisiana, U.S.A.
Lightner DV, Poulos BT, Bruce L, Redman RM, Mari J, Bonami JR (1992) New developments in penaeid virology: Application of biotechnology in research and disease diagnosis for shrimp viruses of concern in the America. In: W. Fulks and K. L. Main (Eds.). Proceedings of a workshop of the international conference on diseases of cultured penaeid shrimp in Asia and the United States. Honolulu, Hawaii, U.S.A.: 232-254
Liu J, Du T, Yuan Y, He Y, Tan Z, Liu Z (2009) KLF6 inhibits estrogen receptor-mediated cell growth in breast cancer via a c-Src-mediated pathway. Mol Cell Biochem 335(1-2): 29-35
Liu WJ, Chang YS, Wang AH, Kou GH, Lo CF (2007) White spot syndrome virus annexes a shrimp STAT to enhance expression of the immediate-early gene ie1. J Virol 81(3): 1461-1471
Liu WJ, Chang YS, Wang CH, Kou GH, Lo CF (2005) Microarray and RT-PCR screening for white spot syndrome virus immediate-early genes in cycloheximide-treated shrimp. Virology 334: 327-341
Liu WJ, Chang YS, Wang HC, Leu JH, Kou GH, Lo CF (2008) Transactivation, dimerization, and DNA-binding activity of white spot syndrome virus immediate-early protein IE1. J Virol 82(22): 11362-11373
Lo CF, Ho CH, Peng SE, Chen CH, Hsu HC, Chiu YL, Chen YT, Chang CF, Liu KF, Su MS, Wang CH, Kou GH (1996) White spot symdrome associated virus (WSBV) in cultured and wild-caught shrimps, crabs and other arthropods. Dis Aquat Organ 27: 215 ~ 225
Lo CF, Kou GH (1998) Virus-associated white spot syndrome of shrimp in Taiwan: a review. Fish Pathol 33: 365 ~ 371
Loh PC, Cesar E, B. NJ, Tapay LM, Lu Y (1998) Recent developments in immunologically-based and cell culture protocols for the specific detection of shrimp viral pathogens. In: Flegel, T. W. (eds.) Advances in shrimp biotechnology.: 255 ~ 259
Lotz JM, Browdy CL, Carr WH, Frelier PF, Lightner DV (1995) USMSFP suggested procedures and guidelines for assuring the specific pathogen status of shrimp broodstock and seed. In: Browdy, C. L. & Hopkins, J. S. (eds.) Swimming Through Troubled Water, Proceedings the Special Session on Shrimp Farming, Aquaculture '95. World Aquaculture Society, Baton Rouge, Louisina, U.S.A.:66-75.
Lu CP, Zhu S, Guo FS, Wu SY (1997) Electron microscopic observation on a non-occluded baculo-like virus in shrimps. Arch Virol 142(10): 2073-2078
Magbanua FO, Natividad KT, Migo VP, Alfafara CG, de la Pena FO, Miranda RO, Albaladejo JD, Nadala EC, Jr., Loh PC, Mahilum-Tapay L (2000) White spot syndrome virus (WSSV) in cultured Penaeus monodon in the Philippines. Dis Aquat Organ 42(1): 77-82
Manche L, Green SR, Schmedt C, Mathews MB (1992) Interactions between double-stranded RNA regulators and the protein kinase DAI. Mol Cell Biol 12(11): 5238-5248
Martinez J, Patkaniowska A, Urlaub H, Luhrmann R, Tuschl T (2002) Single-stranded antisense siRNAs guide target RNA cleavage in RNAi. Cell 110(5): 563-574
Miller IJ, Bieker JJ (1993) A novel, erythroid cell-specific murine transcription factor that binds to the CACCC element and is related to the Kruppel family of nuclear proteins. Mol Cell Biol 13(5): 2776-2786
Miyamoto S, Suzuki T, Muto S, Aizawa K, Kimura A, Mizuno Y, Nagino T, Imai Y, Adachi N, Horikoshi M, Nagai R (2003) Positive and negative regulation of the cardiovascular transcription factor KLF5 by p300 and the oncogenic regulator SET through interaction and acetylation on the DNA-binding domain. Mol Cell Biol 23(23): 8528-8541
Mohan CV, Shankar KM, Kulkarni S, Sudha PM (1998) Histopathology of cultured shrimp showing gross signs of yellow head syndrome and white spot syndrome during 1994 Indian epizootics. Dis Aquat Organ 34(1): 9-12
Nadala ECB, Tappy TM, Loh PC (1997) Yellow-head virus: a rhabdovius-like pathogen of penaeid shrimp. Dis Aquat Organ 31: 141-146
Nandan MO, Yang VW (2009) The role of Kruppel-like factors in the reprogramming of somatic cells to induced pluripotent stem cells. Histol Histopathol 24(10): 1343-1355
Nuez B, Michalovich D, Bygrave A, Ploemacher R, Grosveld F (1995) Defective haematopoiesis in fetal liver resulting from inactivation of the EKLF gene. Nature 375(6529): 316-318
Oishi Y, Manabe I, Tobe K, Tsushima K, Shindo T, Fujiu K, Nishimura G, Maemura K, Yamauchi T, Kubota N, Suzuki R, Kitamura T, Akira S, Kadowaki T, Nagai R (2005) Kruppel-like transcription factor KLF5 is a key regulator of adipocyte differentiation. Cell Metab 1(1): 27-39
Okano J, Opitz OG, Nakagawa H, Jenkins TD, Friedman SL, Rustgi AK (2000) The Kruppel-like transcriptional factors Zf9 and GKLF coactivate the human keratin 4 promoter and physically interact. FEBS Lett 473(1): 95-100
Outram SV, Gordon AR, Hager-Theodorides AL, Metcalfe J, Crompton T, Kemp P (2008) KLF13 influences multiple stages of both B and T cell development. Cell Cycle 7(13): 2047-2055
Pandya K, Townes TM (2002) Basic residues within the Kruppel zinc finger DNA binding domains are the critical nuclear localization determinants of EKLF/KLF-1. J Biol Chem 277(18): 16304-16312
Park JH, Lee YS, Lee S, Lee Y (1998) An infectious viral disease of penaeid shrimp newly found in Korea. Dis Aquat Organ 34(1): 71-75
Philipsen S, Suske G (1999) A tale of three fingers: the family of mammalian Sp/XKLF transcription factors. Nucleic Acids Res 27(15): 2991-3000
Ratziu V, Lalazar A, Wong L, Dang Q, Collins C, Shaulian E, Jensen S, Friedman SL (1998) Zf9, a Kruppel-like transcription factor up-regulated in vivo during early hepatic fibrosis. Proc Natl Acad Sci U S A 95(16): 9500-9505
Robalino J, Browdy CL, Prior S, Metz A, Parnell P, Gross P, Warr G (2004) Induction of antiviral immunity by double-stranded RNA in a marine invertebrate. J Virol 78(19): 10442-10448
Schuh R, Aicher W, Gaul U, Cote S, Preiss A, Maier D, Seifert E, Nauber U, Schroder C, Kemler R, et al. (1986) A conserved family of nuclear proteins containing structural elements of the finger protein encoded by Kruppel, a Drosophila segmentation gene. Cell 47(6): 1025-1032
Scobie KN, Hall BJ, Wilke SA, Klemenhagen KC, Fujii-Kuriyama Y, Ghosh A, Hen R, Sahay A (2009) Kruppel-like factor 9 is necessary for late-phase neuronal maturation in the developing dentate gyrus and during adult hippocampal neurogenesis. J Neurosci 29(31): 9875-9887
Shie JL, Chen ZY, Fu M, Pestell RG, Tseng CC (2000) Gut-enriched Kruppel-like factor represses cyclin D1 promoter activity through Sp1 motif. Nucleic Acids Res 28(15): 2969-2976
Shields JM, Yang VW (1997) Two potent nuclear localization signals in the gut-enriched Kruppel-like factor define a subfamily of closely related Kruppel proteins. J Biol Chem 272(29): 18504-18507
Shindo T, Manabe I, Fukushima Y, Tobe K, Aizawa K, Miyamoto S, Kawai-Kowase K, Moriyama N, Imai Y, Kawakami H, Nishimatsu H, Ishikawa T, Suzuki T, Morita H, Maemura K, Sata M, Hirata Y, Komukai M, Kagechika H, Kadowaki T, Kurabayashi M, Nagai R (2002) Kruppel-like zinc-finger transcription factor KLF5/BTEB2 is a target for angiotensin II signaling and an essential regulator of cardiovascular remodeling. Nat Med 8(8): 856-863
Song A, Patel A, Thamatrakoln K, Liu C, Feng D, Clayberger C, Krensky AM (2002a) Functional domains and DNA-binding sequences of RFLAT-1/KLF13, a Kruppel-like transcription factor of activated T lymphocytes. J Biol Chem 277(33): 30055-30065
Song CZ, Keller K, Murata K, Asano H, Stamatoyannopoulos G (2002b) Functional interaction between coactivators CBP/p300, PCAF, and transcription factor FKLF2. J Biol Chem 277(9): 7029-7036
Soto MA, Lotz JM (2001) Epidemiological parameters of White Spot Syndrome Virus infections in Litopenaeus vannamei and L. setiferus. J Invertebr Pathol 78(1): 9-15
Stanojevic D, Hoey T, Levine M (1989) Sequence-specific DNA-binding activities of the gap proteins encoded by hunchback and Kruppel in Drosophila. Nature 341(6240): 331-335
Subramaniam M, Gorny G, Johnsen SA, Monroe DG, Evans GL, Fraser DG, Rickard DJ, Rasmussen K, van Deursen JM, Turner RT, Oursler MJ, Spelsberg TC (2005) TIEG1 null mouse-derived osteoblasts are defective in mineralization and in support of osteoclast differentiation in vitro. Mol Cell Biol 25(3): 1191-1199
Takahashi K, Yamanaka S (2006) Induction of pluripotent stem cells from mouse embryonic and adult fibroblast cultures by defined factors. Cell 126(4): 663-676
Tan FL, Yin JQ (2004) RNAi, a new therapeutic strategy against viral infection. Cell Res 14(6): 460-466
Tsai MF, Lo CF, van Hulten MC, Tzeng HF, Chou CM, Huang CJ, Wang CH, Lin JY, Vlak JM, Kou GH (2000a) Transcriptional analysis of the ribonucleotide reductase genes of shrimp white spot syndrome virus. Virology 277(1): 92-99
Tsai MF, Yu HT, Tzeng HF, Leu JH, Chou CM, Huang CJ, Wang CH, Lin JY, Kou GH, Lo CF (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(1): 100-110
Tupler R, Perini G, Green MR (2001) Expressing the human genome. Nature 409(6822): 832-833
Turner J, Crossley M (1998) Cloning and characterization of mCtBP2, a co-repressor that associates with basic Kruppel-like factor and other mammalian transcriptional regulators. EMBO J 17(17): 5129-5140
van Hulten MC, Witteveldt J, Peters S, Kloosterboer N, Tarchini R, Fiers M, Sandbrink H, Lankhorst RK, Vlak JM (2001) The white spot syndrome virus DNA genome sequence. Virology 286(1): 7-22
van Vliet J, Crofts LA, Quinlan KG, Czolij R, Perkins AC, Crossley M (2006) Human KLF17 is a new member of the Sp/KLF family of transcription factors. Genomics 87(4): 474-482
van Vliet J, Turner J, Crossley M (2000) Human Kruppel-like factor 8: a CACCC-box binding protein that associates with CtBP and represses transcription. Nucleic Acids Res 28(9): 1955-1962
Vanhecke D, Janitz M (2005) Functional genomics using high-throughput RNA interference. Drug Discov Today 10(3): 205-212
Wang Q, Nunan LM, Lightner DV (2000) Identification of genomic variations among geographic isolates of white spot syndrome virus using restriction analysis and Southern blot hybridization. Dis Aquat Organ 43(3): 175-181
Wang QC, Nie QH, Feng ZH (2003) RNA interference: antiviral weapon and beyond. World J Gastroenterol 9(8): 1657-1661
Wang X, Zhao J (2007) KLF8 transcription factor participates in oncogenic transformation. Oncogene 26(3): 456-461
Yan DC, Dong S-L, Huang J, Yu X-M, Feng M-Y, Liu X-Y (2004) White spot syndrome virus (WSSV) detected by PCR in rotifers and rotifer resting eggs from shrimp pond sediments. Dis Aquat Organ 59(1): 69-73
Yang F, He J, Lin X, Li Q, Pan D, Zhang X, Xu X (2001) Complete genome sequence of the shrimp white spot bacilliform virus. J Virol 75(23): 11811-11820
Yurochko AD, Mayo MW, Poma EE, Baldwin AS, Jr., Huang ES (1997) Induction of the transcription factor Sp1 during human cytomegalovirus infection mediates upregulation of the p65 and p105/p50 NF-kappaB promoters. J Virol 71(6): 4638-4648
Zhang W, Bieker JJ (1998) Acetylation and modulation of erythroid Kruppel-like factor (EKLF) activity by interaction with histone acetyltransferases. Proc Natl Acad Sci U S A 95(17): 9855-9860
Zhang W, Kadam S, Emerson BM, Bieker JJ (2001) Site-specific acetylation by p300 or CREB binding protein regulates erythroid Kruppel-like factor transcriptional activity via its interaction with the SWI-SNF complex. Mol Cell Biol 21(7): 2413-2422
Zhang W, Shields JM, Sogawa K, Fujii-Kuriyama Y, Yang VW (1998) The gut-enriched Kruppel-like factor suppresses the activity of the CYP1A1 promoter in an Sp1-dependent fashion. J Biol Chem 273(28): 17917-17925
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/45745-
dc.description.abstractSp1-like蛋白質和Kruppel-like factors (KLFs)均具有高相關性的鋅指 (zinc finger)區域,在細胞轉錄過程中扮演重要角色。利用NCBI資料庫比對發現一個草蝦 (Penaeus monodon)的表現序列標誌 (EST, HPA-N-S01-EST0038)和Sp1序列具有高度同源性。因此本研究利用5’端cDNA快速放大法 (5’RACE)成功地選殖出草蝦的KLF,並命名為PmKLF。PmKLF全長可轉譯出498個胺基酸。序列分析發現PmKLF和人類,老鼠及斑馬魚的KLF11相似。另外,演化分析此鋅指DNA結合區域在不同物種間具有高度相同性。利用RT-PCR分析PmKLF mRNA發現在蝦的中腸、肌肉、心臟、神經、鰓、肝胰腺和胃中均會表現。利用大腸桿菌重組蛋白質當作抗PmKLF蛋白質的抗原並生產抗PmKLF抗體得知PmKLF在草蝦中大小約為60 kDa。利用螢光顯微鏡觀察發現當過度表現PmKLF於昆蟲細胞Sf9時,PmKLF以點狀聚集在細胞核。另外,以PmKLF的刪除突變株分析發現PmKLF的鋅指區域含有進核訊號。而在未感染白點症病毒 (White spot syndrome virus, WSSV)及感染病毒的白蝦中,在其血球細胞中也觀察到PmKLF在細胞核內聚集成點狀。由於WSSV的極早期基因ie1在昆蟲細胞Sf9具有高度轉錄活性,將PmKLF的突變株及報導基因pIE1-Luc共同轉染入Sf9中,發現PmKLF的第166到381個胺基酸可能會影響ie1的轉錄。最後,在蝦體中以siRNA抑制PmKLF的表現後,再感染WSSV病毒,發現可以延長蝦的存活時間。綜合以上的結果,本研究首先分離出蝦的第一個KLF,並證實PmKLF在蝦被WSSV感染時可能扮演重要的角色。zh_TW
dc.description.abstractSp1-like proteins and Kruppel-like factors (KLFs) are zinc-finger proteins and important to transcriptional regulation. One expressed sequence tag (EST, HPA-N-S01-EST0038) from shrimps is homologous to Sp1. In this study, a KLF from Penaeus monodon was cloned and characterized by 5’RACE. The full-length PmKLF encodes a polypeptide of 498 amino acids. Sequence analysis showed that PmKLF has a sequence that of similar to KLF11 in human, mouse and zebrafish. A phylogenetic analysis indicates that the zinc-finger DNA binding domain of PmKLF has high degree of sequences identities with KLF in other species. RT-PCR analysis indicates that PmKLF mRNA is expressed in midguts, muscles, hearts, nerves, gills, hepatopancreas and stomaches of shrimps. The antibody against PmKLF was raised using E. coli recombinant protein as an antigen. Immunoblotting using the antibody reveals that the molecular mass of PmKLF protein is about 60 kDa. Immunofluorescence analysis revealed that PmKLF is located in the nucleus as dots after overexpressing in a Spodoptera frugiperda cell line, Sf9. Moreover, analysis of PmKLF deletion mutants indicates that the zinc finger domain of PmKLF contains a nuclear localizaton signal (NLS). Localization of PmKLF in the nucleus is detected in the hemocytes from white spot syndrome virus (WSSV)-infected and WSSV-uninfected Litopenaeus vannamei. Moreover, it is well known that the immediate-early gene ie1 of WSSV displays high transcription activity in Sf9 cells. Cotransfection of PmKLF deletion mutants and the ie1 reporter plasmid into Sf9 cells suggested that the region between 166 and 381 amino acid residues of PmKLF might affect the ie1 transcription. Furthermore, inhibiting the expression of PmKLF by siRNA in WSSV-challenged shrimps prolongs the survival time. Taken together, this study identifies the first Kruppel-like factor in shrimps and reveals the importance of PmKLF to WSSV infection.en
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Previous issue date: 2010
en
dc.description.tableofcontents致謝 i
中文摘要 ii
英文摘要 iii
一、前 言 1
二、研究目的 9
三、材料與方法 10
1、菌種與細胞株 10
2、質體的建構 10
3、勝任細胞的製備 10
4、大腸桿菌的轉型作用 10
5、質體DNA的萃取 10
6、蝦組織RNA的萃取 11
7、草蝦KLF基因的選殖-5端快速放大cDNA 11
8、草蝦KLF基因的構築 12
9、PmKLF序列的分析比對 12
10、反轉錄酶-聚合酶鏈反應 12
11、抗PmKLF抗體的製備 13
12、細胞轉染 14
13、西方點墨法 15
14、冷光酵素活性分析 15
15、免疫螢光染色 16
16、雙股RNAi的製備 16
17、蝦存活率測試 16
四、結 果 18
1、PmKLF基因的選殖 18
2、PmKLF核苷酸序列與胺基酸序列分析 18
3、PmKLF的同源性分析 18
4、PmKLF在蝦組織中的表現 19
5、抗PmKLF抗體的製備 19
6、PmKLF於大腸桿菌、Sf9細胞與蝦體的表現 19
7、PmKLF在細胞中的表現位置 20
8、PmKLF的鋅指區域可助其進核 20
9、PmKLF的轉錄調節區域 21
10、蝦存活率測試 21
五、討 論 22
六、圖 表 26
七、參考文獻 48
dc.language.isozh-TW
dc.subject白點症病毒zh_TW
dc.subject草蝦zh_TW
dc.subjectKruppel-like factor蛋白質zh_TW
dc.subjectKLF蛋白質zh_TW
dc.subject鋅指zh_TW
dc.subjectPenaeus monodonen
dc.subjectWSSVen
dc.subjectWhite spot Syndrome Virusen
dc.subjectzinc fingeren
dc.subjectKLFen
dc.subjectKruppel-like factoren
dc.title草蝦Kruppel-Like Factor蛋白質的功能性分析zh_TW
dc.titleFunctional Analysis of the Kruppel-Like Factor in Penaeus monodonen
dc.typeThesis
dc.date.schoolyear98-2
dc.description.degree碩士
dc.contributor.oralexamcommittee劉世東,陳歷歷,張世宗
dc.subject.keyword草蝦,Kruppel-like factor蛋白質,KLF蛋白質,鋅指,白點症病毒,zh_TW
dc.subject.keywordPenaeus monodon,Kruppel-like factor,KLF,zinc finger,White spot Syndrome Virus,WSSV,en
dc.relation.page59
dc.rights.note有償授權
dc.date.accepted2010-08-06
dc.contributor.author-college生命科學院zh_TW
dc.contributor.author-dept微生物與生化學研究所zh_TW
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