首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Disruption of forkhead transcription factor (FOXO) family members in mice reveals their functional diversification
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Disruption of forkhead transcription factor (FOXO) family members in mice reveals their functional diversification

机译:小鼠叉头转录因子(FOXO)家族成员的破坏揭示了它们的功能多样化

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Genetic analysis in Caenorhabditis elegans has uncovered essential roles for DAF-16 in longevity, metabolism, and reproduction. The mammalian orthologs of DAF-16, the closely-related FOXO subclass of forkhead transcription factors (FKHR/FOXO1, FKHRL1/FOXO3a, and AFX/FOXO4), also have important roles in cell cycle arrest, apoptosis and stress responses in vitro, but their in vivo physiological roles are largely unknown. To elucidate their role in normal development and physiology, we disrupted each of the Foxo genes in mice. Foxo1-null embryos died on embryonic day 10.5 as a consequence of incomplete vascular development. Foxo7-null embryonic and yolk sac vessels were not well developed at embryonic day 9.5, and Foxo1 expression was found in a variety of embryonic vessels, suggesting a crucial role of this transcription factor in vascular formation. On the other hand, both Foxo3a- and Foxo4-null mice were viable and grossly indistinguishable from their littermate controls, indicating dispensability of these two members of the Foxo transcription factor family for normal vascular development. Foxo3a-null females showed age-dependent infertility and had abnormal ovarian follicular development. In contrast, histological analyses of Foxo4-null mice did not identify any consistent abnormalities. These results demonstrate that the physiological roles of Foxo genes are functionally diverse in mammals.
机译:秀丽隐杆线虫的遗传分析已发现DAF-16在寿命,代谢和繁殖中的重要作用。 DAF-16的哺乳动物直系同源基因,与叉头转录因子(FKHR / FOXO1,FKHRL1 / FOXO3a和AFX / FOXO4)密切相关的FOXO亚类,在体外细胞周期停滞,凋亡和应激反应中也具有重要作用,但是它们的体内生理作用很大程度上未知。为了阐明它们在正常发育和生理中的作用,我们破坏了小鼠中的每个Foxo基因。 Foxo1无效的胚胎在胚胎第10.5天死亡,原因是血管发育不完全。 Foxo7无效的胚胎和卵黄囊血管在胚胎第9.5天发育不佳,并且Foxo1在各种胚胎血管中都有表达,表明该转录因子在血管形成中起着至关重要的作用。另一方面,Foxo3a-和Foxo4-null小鼠均与同窝的小鼠存活且完全没有区别,表明Foxo转录因子家族的这两个成员在正常血管发育中是可有可无的。不含Foxo3a的女性表现出年龄依赖性的不育,并且卵巢卵泡发育异常。相比之下,Foxo4 null小鼠的组织学分析未发现任何一致的异常。这些结果表明,Foxo基因的生理作用在哺乳动物中是功能多样的。

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