Analysis of Transcriptional Activity and Estrogen Responsiveness of Regulatory Elements in Chicken Ovalbumin Promoter

Hyeon Yang, Kyungwoon Kim, J. Kim, J. Woo, Hwi-Cheul Lee, Hoonsung Choi, Sun Keun Jung, S. Sureshkumar, Haesun Lee, K. Oh, S. Byun
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Abstract

Chickens have been considered as well-defined animal bioreactor. The optimized ovalbumin promoter is essential for recombinant protein production in transgenic chicken. Here we try to compare the activity and identify the effect of estrogen on ovalbumin promoter according to each promoter length with estrogen response element (ERE) existence. We cloned two (2.8 and 5.5 kb) ovalbumin promoters that the 5.5 kb contained the ERE but the 2.8 kb did not, and these two promoters were cloned to pGL4.11 vector. Additionally, we constructed another pGL4.11 vector containing of the 4.4 kb (with ERE) ovalbumin promoter deleted with 1 kb between ERE region and the 2.8 kb promoter. For reporter assay, HeLa, MES-SA, LMH/2A, and cEF cells were transfected with all the pGL4.11 vectors. The comparative analysis showed that the mutated 4.4 kb promoter has more potent activity than the 2.8 and 5.5 kb promoters in HeLa, MES-SA, and LMH/2A cells. However, there is no significant difference in cEFs. Also, these cells transfected with the mutated 4.4 kb promoter were treated with the 17β -estradiol (0∼3,000 nM) and HeLa, MES-SA, and LMH/2A cells showed estrogen responsibilities, but cEFs did not. Besides, the mutated 4.4 kb promoter has still higher activity than the 2.8 and 5.5 kb promoter, and there is no transcriptional induction effect in 2.8 kb promoter at 500 nM estrogen that is blood concentration of laying hens. Hence our study strongly suggested that the mutated 4.4 kb promoter is considered as one of the most efficient length for generating transgenic chicken. (
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鸡卵白蛋白启动子调控元件的转录活性及雌激素响应性分析
鸡一直被认为是一种定义良好的动物生物反应器。优化后的卵白蛋白启动子是转基因鸡生产重组蛋白的必要条件。本文根据不同启动子长度是否存在雌激素反应元件(estrogen response element, ERE),比较了雌激素对卵清蛋白启动子的活性和作用。我们克隆了两个卵白蛋白启动子(2.8 kb和5.5 kb),其中5.5 kb的启动子含有ERE,而2.8 kb的启动子不含ERE,并将这两个启动子克隆到pGL4.11载体上。此外,我们构建了另一个pGL4.11载体,该载体包含4.4 kb(含ERE)卵清蛋白启动子,在ERE区域和2.8 kb启动子之间缺失了1 kb。在报告细胞实验中,用所有pGL4.11载体转染HeLa、MES-SA、LMH/2A和cEF细胞。对比分析表明,在HeLa、MES-SA和LMH/2A细胞中,突变的4.4 kb启动子比2.8和5.5 kb启动子具有更强的活性。然而,cEFs没有显著差异。同样,这些转染了突变4.4 kb启动子的细胞用17β -雌二醇(0 ~ 3,000 nM)处理,HeLa, MES-SA和LMH/2A细胞显示出雌激素的责任,但cEFs没有。此外,突变4.4 kb启动子的活性仍然高于2.8和5.5 kb启动子,并且在500 nM雌激素(即蛋鸡血药浓度)下,2.8 kb启动子没有转录诱导作用。因此,我们的研究强烈表明,突变的4.4 kb启动子被认为是产生转基因鸡最有效的长度之一。(
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