首页> 美国卫生研究院文献>Scientific Reports >Expression of human mutant cyclin dependent kinase 4 Cyclin D and telomerase extends the life span but does not immortalize fibroblasts derived from loggerhead sea turtle (Caretta caretta)
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Expression of human mutant cyclin dependent kinase 4 Cyclin D and telomerase extends the life span but does not immortalize fibroblasts derived from loggerhead sea turtle (Caretta caretta)

机译:表达人类突变细胞周期蛋白依赖性激酶4细胞周期蛋白D和端粒酶可延长寿命但不会永生源自海龟(Caretta caretta)的成纤维细胞

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摘要

Conservation of the genetic resources of endangered animals is crucial for future generations. The loggerhead sea turtle (Caretta caretta>) is a critically endangered species, because of human hunting, hybridisation with other sea turtle species, and infectious diseases. In the present study, we established primary fibroblast cell lines from the loggerhead sea turtle, and showed its species specific chromosome number is 2n = 56, which is identical to that of the hawksbill and olive ridley sea turtles. We first showed that intensive hybridization among multiple sea turtle species caused due to the identical chromosome number, which allows existence of stable hybridization among the multiple sea turtle species. Expressions of human-derived mutant Cyclin-dependent kinase 4 (CDK4) and Cyclin D dramatically extended the cell culture period, when it was compared with the cell culture period of wild type cells. The recombinant fibroblast cell lines maintained the normal chromosome condition and morphology, indicating that, at the G1/S phase, the machinery to control the cellular proliferation is evolutionally conserved among various vertebrates. To our knowledge, this study is the first to demonstrate the functional conservation to overcome the negative feedback system to limit the turn over of the cell cycle between mammalian and reptiles. Our cell culture method will enable the sharing of cells from critically endangered animals as research materials.
机译:保护濒危动物的遗传资源对子孙后代至关重要。海龟(Caretta caretta >)是极度濒危的物种,原因是人类狩猎,与其他海龟物种杂交以及传染病。在本研究中,我们建立了来自海龟的原代成纤维细胞系,并显示其物种特定染色体数为2n = 56,与和橄榄色ridley海龟的染色体相同。我们首先表明,由于相同的染色体数引起了多种海龟物种之间的强烈杂交,这使得多种海龟物种之间存在稳定的杂交。当与野生型细胞的细胞培养时间进行比较时,人类衍生的突变细胞周期蛋白依赖性激酶4(CDK4)和细胞周期蛋白D的表达大大延长了细胞培养时间。重组的成纤维细胞系维持正常的染色体状态和形态,表明在G1 / S期,控制细胞增殖的机制在各种脊椎动物之间是进化保守的。据我们所知,这项研究是第一个展示功能保守性以克服负反馈系统以限制哺乳动物和爬行动物之间的细胞周期转换的研究。我们的细胞培养方法将能够共享来自极度濒危动物的细胞作为研究材料。

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