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  1. NTU Theses and Dissertations Repository
  2. 生物資源暨農學院
  3. 動物科學技術學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/59746
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DC 欄位值語言
dc.contributor.advisor丁詩同(Shih-Torng Ding)
dc.contributor.authorHo-Ching Tsaien
dc.contributor.author蔡和澋zh_TW
dc.date.accessioned2021-06-16T09:35:56Z-
dc.date.available2020-02-17
dc.date.copyright2017-02-17
dc.date.issued2017
dc.date.submitted2017-02-13
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王琇慧。2015。日本鵪鶉卵黃囊膜內胚層上皮細胞藉由cyclic AMP調控第一型固醇轉醯酶增加膽固醇酯化之機制。碩士論文。國立台灣大學。台北。pp. 14-17。
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Klinge C. M., S. C. Jernigan, S. L. Smith, V. V. Tyulmenkov and P. C. Kulakosky. 2001. Estrogen response element sequence impacts the conformation and transcriptional activity of estrogen receptor alpha. Mol Cell Endocrinol 174(1-2): 151-66.
Kodama D., D. Nishimiya, K. Nishijima, Y. Okino, Y. Inayoshi, Y. Kojima, K. Ono, M. Motono, K. Miyake, Y. Kawabe, K. Kyogoku, T. Yamashita, M. Kamihira and S. Iijima. 2012. Chicken oviduct-specific expression of transgene by a hybrid ovalbumin enhancer and the Tet expression system. J Biosci Bioeng 113(2): 146-153.
Kwon S. C., J. W. Choi, H. J. Jang, S. S. Shin, S. K. Lee, T. S. Park, I. Y. Choi, G. S. Lee, G. Song and J. Y. Han. 2010. Production of biofunctional recombinant human interleukin 1 receptor antagonist (rhIL1RN) from transgenic quail egg white. Biol Reprod 82(6): 1057-1064.
Lee S. H., M. K. Gupta, D. W. Han, S. Y. Han, S. J. Uhm, T. Kim and H. T. Lee. 2007. Development of transgenic chickens expressing human parathormone under the control of a ubiquitous promoter by using a retrovirus vector system. Poult Sci 86(10): 2221-2227.
Lillico S. G., A. Sherman, M. J. McGrew, C. D. Robertson, J. Smith, C. Haslam, P. Barnard, P. A. Radcliffe, K. A. Mitrophanous, E. A. Elliot and H. M. Sang. 2007. Oviduct-specific expression of two therapeutic proteins in transgenic hens. Proc Natl Acad Sci 104(6): 1771-1776.
Lillico S. G., M. J. McGrew, A. Sherman and H. M. Sang. 2005. Transgenic chickens as bioreactors for protein-based drugs. Drug Discov Today 10(3): 191-196.
Lingappa V. R., J. R. Lingappa and G. Blobel. 1979. Chicken ovalbumin contains an internal signal sequence. Nature 281(5727): 117-121.
Meek R. L., K. A. Walsh and R. D. Palmiter. 1982. The signal sequence of ovalbumin is located near the NH2 terminus. J Biol Chem 257(20): 12245-12251.
Morshed M., S. Sano, D. Nishimiya, M. Ando, K. Nishijima and S. Iijima. 2006. Chicken ovalbumin promoter is demethylated upon expression in the regions specifically involved in estrogen-responsiveness. Biosci Biotechnol Biochem 70(6): 1438-1446.
Oishi I., S. Kim, K. Yoshii, C. R. Esteban and J.C. Izpisua Belmonte. 2011. Cre-LoxP-regulated expression of monoclonal antibodies driven by an ovalbumin promoter in primary oviduct cells. BMC Biotechnol 11: 5.
Palmiter R. D. 1972. Regulation of protein synthesis in chick oviduct. I. Independent regulation of ovalbumin, conalbumin, ovomucoid, and lysozyme induction. J Biol Chem 247(20): 6450-6461.
Park T. S., H. G. Lee, J. K. Moon, H. J. Lee, J. W. Yoon, B. N .Yun, S. C. Kang, J. Kim, H. Kim, J. Y. Han and B. K. Han. 2015. Deposition of bioactive human epidermal growth factor in the egg white of transgenic hens using an oviduct-specific minisynthetic promoter. FASEB J 29(6): 2386-2396.
Qin W., J. Pan, Y. Qin, D. N. Lee, W. A. Bauman and C. Cardozo. 2014. Identification of functional glucocorticoid response elements in the mouse FoxO1 promoter. Biochem Biophys Res Commun 450(2) :979-983.
Robinson A., C. Meredith and B. M. Austen. 1986. Isolation and properties of the signal region from ovalbumin. FEBS Lett 203(2): 243-246.
Sanders M. M. and G. Stanley McKnight. 1985. Chicken egg white genes: multihormonal regulation in a primary cell culture system. Endocrinology 116(1): 398-405.
Scott B. B. and C. Lois. 2005. Generation of tissue-specific transgenic birds with lentiviral vectors. Proc Natl Acad Sci 102(45): 16443-7.
Shit N., K. V. Sastry, R. P. Singh, N. K. Pandey and J. Mohan. 2014. Sexual maturation, serum steroid concentrations, and mRNA expression of IGF-1, luteinizing and progesterone hormone receptors and survivin gene in Japanese quail hens. Theriogenology 81(5): 662-668.
Stadnicka K., M. Bodnar, A. Marszałek, A. Bajek, T. Drewa, G. Płucienniczak, L. Chojnacka-Puchta, V. Cecuda-Adamczewska, A. Dunisławska and M. Bednarczyk. 2016. Efficient Source of Cells in Proximal Oviduct for Testing Non-Viral Expression Constructs in the Chicken Bioreactor Model and for Other in Vitro Studies. Folia Biol (Krakow) 64(1): 37-46.
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Takami H., H. Watanabe, Y. Ohmori, H. M. Park and T. Muramatsu. 2002. Human alkaline phosphatase expression and secretion into chicken eggs after in vivo gene electroporation in the oviduct of laying hens. Biochem Biophys Res Commun 292(1): 88-93.
Goel V. K., and B. C. Joshi. 2007. Effect of progesterone on the magnum proteins during primary stimulation of chick oviduct. Br Poult Sci 19(5): 591-594.
Wu X., X. Zhang, H. Zhang, P. Su, W. Li, L. Li, Y. Wang, W. Liu, P. Gao and G. Zhou. 2012. Progesterone receptor downregulates breast cancer resistance protein expression via binding to the progesterone response element in breast cancer. Cancer Sci 103(5): 959-967.
Wyburn G. M., H. S. Johnston, M. H. Draper and M. F. Davidson. 1970. The fine structure of the infundibulum and magnum of the oviduct of Gallus domesticus. Q J Exp Physiol Cogn Med Sci 55(3): 213-232.
Zhang Q., C. Wang, Z. Wu, S. Piao, Y. Liang and T. An, 2014. Establishment and Characterization of a Chicken Oviduct Epithelial Cell Line from Hy-Line Variety Brown. Agricultural Journal 9: 86-92.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/59746-
dc.description.abstract由於家禽類生長周期較短以及穩定產蛋的特性,基因轉殖家禽的研究已經被廣泛的應用在產製外源蛋白質,尤其是以禽蛋為生產工具。而蛋白佔禽蛋內總蛋白質含量的一半以上,且卵白蛋白 (ovalbumin, OVA) 為蛋白中的主要蛋白質。因為蛋白相對簡單的組成以及卵白蛋白在輸卵管中的專一性表現,許多研究已利用卵白蛋白之啟動子引導下游目標基因表現,並成功於禽蛋中偵測到目標蛋白質。而家禽輸卵管中專一性生產蛋白的蛋白分泌部上皮細胞,其體外之培養系統尚未被完整的建立,因此本研究主要之目的為建立輸卵管上皮細胞(oviductal epithelial cells, OECs)之初代培養系統,並以此系統來測定卵白蛋白啟動子之活性。
性成熟之日本鵪鶉輸卵管的蛋白分泌部被解剖以收集OECs。在將上皮組織從輸卵管管腔刮取下來後,會以蛋白分解酶進行分離細胞作用。為了使細胞的存活率以及增殖效率提高,我們測試不同種類及濃度的蛋白分解酶以及細胞盤塗層材料,以便建立最佳的培養系統。結果發現使用含有第四型膠原蛋白酶 (275 Units/mL) 以及0.02%之胰蛋白酶的消化溶液時,細胞的分離效果為最好;而使用0.1%的Gelatin type B作為細胞盤的塗層物質時,細胞於細胞盤上的貼覆率比沒有處理或塗佈聚離胺酸為高。接著使用免疫染色法以及西方墨點法來標定細胞內的特定蛋白質 (OVA) 以及Estrogen receptor alpha (ESR 1),確認本研究所建立的方法可以取得正確的OECs。為了探討OVA promoter之活性調控,我們將OECs以不同濃度之Estrogen (E2)、Progesterone (P4)及 Dexamethasone處理,結果發現E2處理都能增加OECs內之OVA mRNA的表現量,而且表現量隨劑量增加而上升,而P4和Dexamethasone處理在有2.5×10-7 M E2都能增加OECs內之OVA mRNA的表現量,尤其在同時加入2.5×10-7 M E2, 1×10-7 M P4 and 1×10-7 M Dexamethasone時會達到最高表現量。當含2.8 kb OVA promoter且帶有冷光報導基因的pGL3-OVA載體轉染到OECs及293T細胞時,以相同濃度及種類之內泌素處裡兩種細胞,結果顯示,OECs內的冷光表現量會受到E2、P4和Dexamethasone處理的調控,結果與OECs內內源性OVA mRNA之表現量相似,而293T細胞內的冷光表現量則不受這些內泌素調控。
綜合上述,我們成功地建立並且改善了日本鵪鶉輸卵管上皮細胞的初代培養系統,並釐清OVA promoter受內泌素調控之機制,建立增進此基因表現的條件。因此這個培養系統之後將可以應用在評估及調控OVA promoter的活性,用以產製外源蛋白質。
zh_TW
dc.description.abstractResearch models of transgenic avian have been widely applied for generating exogenous proteins in eggs because of their relatively short generation interval and stable protein productions. Albumin constitutes more than half of the protein in eggs, and ovalbumin (OVA) is the primary component. According to the composition of egg white and the tissue-specific expression of ovalbumin, most of the published exogenous proteins are driven by ovalbumin promoter and detected in egg white. However, in vitro functional studies on avian oviductal epithelial cells (OECs) in magnum segments, where egg white are synthesized and secreted, are needed. In this study, we established and the primary culture system for OECs in order to study the regulation of ovalbumin promoter activity.
The magnum segments of oviducts from sexually-mature female Japanese quails were dissected for OECs collection. After scraping epithelial cells from the lumen surface, the obtained cells were then underwent enzymatic dissociation. For improving cell survival rate and proliferation, different concentrations of digestion enzymes and culture dish coating materials were examined. Results showed that digestion solution containing collagenase type IV (275 units/ mL) and 0.02% trypsin worked the best for OECs isolation. The 0.1% gelatin solution is required for coating culture plate to enhance OECs attachment. We examined protein expression of OVA and estrogen receptor 1 (ESR1) on cultured OECs by immunofluorescent staining and Western blotting. For studying OVA promoter activity regulation, the OECs were treated with several concentrations of estrogen (E2), progesterone (P4) and Dexamethasone to examine the effects of different hormones on the expression of OVA. We found that OVA mRNA expression was significantly increased when treated with 2.5×10-7 M E2, 1×10-7 M P4 and 1×10-7 M Dexamethasone. Meanwhile, we cloned a 2.8-kb OVA promoter from chicken genomic DNA and constructed with the luciferase reporter vector (pGL3). We then transfected the pGL3-OVA construction into both OECs and 293T cell line and treated with E2, P4 and Dexamethasone to measure promoter activity using a reporter gene, luciferase. Results showed that under hormone stimulations, the expressions of OECs promoter regulated by hormones were similar to the expression of OVA mRNA in OECs, but there was no hormonal effect in 293T cells.
In conclusion, we successfully established a primary culture system for Japanese quail oviductal epithelial cells, and this system can be applied to study the evaluation and regulation of the OVA promoter for exogenous protein production.
en
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Previous issue date: 2017
en
dc.description.tableofcontents誌謝 II
中文摘要 III
Abstract V
目錄 VII
圖目錄 IX
表目錄 X
第壹章、文獻回顧 1
一、 醫療蛋白質在禽類之產製 1
二、 卵白蛋白啟動子之應用 2
三、 禽類之輸卵管上皮細胞 4
四、 性內泌素對禽類輸卵管之影響 6
第貳章、材料與方法 8
一、 建立及改善日本鵪鶉輸卵管上皮細胞之初代培養 9
(1) 培育性成熟之母鵪鶉 9
(2) 緩衝液及培養液之準備 9
(3) 輸卵管上皮細胞之初代培養 9
(4) 使用不同種類之消化酶組合促進OECs分離 11
(5) 使用不同種類之細胞盤塗層促進OECs貼附 11
(6) 免疫染色法標定細胞內特定蛋白質 12
(7) 西方墨點法標定細胞內之卵白蛋白 13
二、 OVA promoter 選殖與報導基因載體構築 15
(1) 雞基因組DNA的萃取 15
(2) 引子設計以及聚合酶連鎖反應 15
(3) PCR產物接入載體及轉形 17
(4) 質體DNA純化與定序 17
(5) 轉錄因子結合位之預測 18
(6) 報導基因載體構築 18
三、 OVA promoter活性之調控及測定 20
(1) 外源處理內泌素以提高OECs內OVA mRNA之表現量 20
(2) OVA promoter在OECs及293T cell內之活性調控 24
四、 統計方法 25
第參章、實驗結果 26
一、 建立及改善日本鵪鶉輸卵管上皮細胞之初代培養 26
二、 OVA promoter 的選殖與報導基因構築 33
(1) OVA promoter的選殖與定序 33
(2) 轉錄因子結合位之預測 40
(3) 構築含有OVA promoter之報導基因載體 41
三、 OVA promoter 活性之調控及測定 42
(1) 外源處理內泌素以提高OECs內OVA mRNA之表現量 42
(2) OVA promoter在OECs及293T cell內之活性調控 45
第肆章、討論 47
第伍章、結論 52
參考文獻 53
dc.language.isozh-TW
dc.title建立輸卵管上皮細胞之初代培養以測定卵白蛋白啟動子活性zh_TW
dc.titleEstablishment of oviduct epithelial cells culture system for ovalbumin promoter evaluationen
dc.typeThesis
dc.date.schoolyear105-1
dc.description.degree碩士
dc.contributor.oralexamcommittee陳靜宜,吳信志,陳洵一
dc.subject.keyword輸卵管上皮細胞,初代培養系統,卵白蛋白啟動子,內泌素調控,zh_TW
dc.subject.keywordoviduct epithelial cells,primary culture system,ovalbumin promoter,hormonal regulation,en
dc.relation.page56
dc.identifier.doi10.6342/NTU201700459
dc.rights.note有償授權
dc.date.accepted2017-02-13
dc.contributor.author-college生物資源暨農學院zh_TW
dc.contributor.author-dept動物科學技術學研究所zh_TW
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