【2h】

A fork in the path

机译:路径中的叉子

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摘要

Advances in clinical care for disorders involving any system of the body necessitates novel therapeutic strategies that can focus upon the modulation of cellular proliferation, metabolism, inflammation and longevity. In this respect, members of the mammalian forkhead transcription factors of the O class (FoxOs) that include FoxO1, FoxO3, FoxO4 and FoxO6 are increasingly being recognized as exciting prospects for multiple disorders. These transcription factors govern development, proliferation, survival and longevity during multiple cellular environments that can involve oxidative stress. Furthermore, these transcription factors are closely integrated with several novel signal transduction pathways, such as erythropoietin and Wnt proteins, that may influence the ability of FoxOs to act as a “double-edge sword” to sometimes promote cell survival, but at other times lead to cell injury. Here we discuss the fascinating but complex role of FoxOs during cellular injury and oxidative stress, progenitor cell development, fertility, angiogenesis, cardiovascular function, cellular metabolism and diabetes, cell longevity, immune surveillance and cancer.
机译:对于涉及身体任何系统的疾病的临床护理的进步,需要新颖的治疗策略,该策略应侧重于调节细胞增殖,代谢,炎症和寿命。在这方面,包括FoxO1,FoxO3,FoxO4和FoxO6在内的O类哺乳动物叉头转录因子(FoxOs)的成员日益被认为是多种疾病的激动人心的前景。这些转录因子控制着可能涉及氧化应激的多种细胞环境中的发育,增殖,存活和寿命。此外,这些转录因子与几种新的信号转导途径紧密结合,例如促红细胞生成素和Wnt蛋白,这可能会影响FoxO充当“双刃剑”的能力,有时会促进细胞存活,但有时会导致对细胞的伤害。在这里,我们讨论FoxOs在细胞损伤和氧化应激,祖细胞发育,生育力,血管生成,心血管功能,细胞代谢和糖尿病,细胞寿命,免疫监测和癌症中的迷人而复杂的作用。

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