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The essential biology of the endoplasmic reticulum stress response for structural and computational biologists

机译:结构生物学和计算生物学家对内质网应激反应的基本生物学

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摘要

The endoplasmic reticulum (ER) stress response is a cytoprotective mechanism that maintains homeostasis of the ER by upregulating the capacity of the ER in accordance with cellular demands. If the ER stress response cannot function correctly, because of reasons such as aging, genetic mutation or environmental stress, unfolded proteins accumulate in the ER and cause ER stress-induced apoptosis, resulting in the onset of folding diseases, including Alzheimer's disease and diabetes mellitus. Although the mechanism of the ER stress response has been analyzed extensively by biochemists, cell biologists and molecular biologists, many aspects remain to be elucidated. For example, it is unclear how sensor molecules detect ER stress, or how cells choose the two opposite cell fates (survival or apoptosis) during the ER stress response. To resolve these critical issues, structural and computational approaches will be indispensable, although the mechanism of the ER stress response is complicated and difficult to understand holistically at a glance. Here, we provide a concise introduction to the mammalian ER stress response for structural and computational biologists.
机译:内质网(ER)应激反应是一种细胞保护机制,可根据细胞需求通过上调ER的能力来维持ER的稳态。如果由于年龄,遗传突变或环境压力等原因导致内质网应激反应无法正常运行,则未折叠的蛋白质会积聚在内质网中并引起内质网应激诱导的细胞凋亡,从而导致包括阿尔茨海默氏病和糖尿病在内的折叠性疾病发作。尽管生物化学家,细胞生物学家和分子生物学家已经对ER应激反应的机制进行了广泛的分析,但许多方面仍有待阐明。例如,目前尚不清楚传感器分子如何检测内质网应激,或细胞在内质网应激反应期间如何选择两种相反的细胞命运(存活或凋亡)。为了解决这些关键问题,尽管ER应力反应的机制很复杂并且一目了然地难以理解,但是结构和计算方法将是必不可少的。在这里,我们为结构和计算生物学家简要介绍了哺乳动物的内质网应激反应。

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