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The small molecule ISRIB rescues the stability and activity of Vanishing White Matter Disease eIF2B mutant complexes

机译:小分子ISRIB拯救了消失的白质病eIF2B突变体复合物的稳定性和活性

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摘要

eIF2B is a dedicated guanine nucleotide exchange factor for eIF2, the GTPase that is essential to initiate mRNA translation. The integrated stress response (ISR) signaling pathway inhibits eIF2B activity, attenuates global protein synthesis and upregulates a set of stress-response proteins. Partial loss-of-function mutations in eIF2B cause a neurodegenerative disorder called Vanishing White Matter Disease (VWMD). Previously, we showed that the small molecule ISRIB is a specific activator of eIF2B (). Here, we report that various VWMD mutations destabilize the decameric eIF2B holoenzyme and impair its enzymatic activity. ISRIB stabilizes VWMD mutant eIF2B in the decameric form and restores the residual catalytic activity to wild-type levels. Moreover, ISRIB blocks activation of the ISR in cells carrying these mutations. As such, ISRIB promises to be an invaluable tool in proof-of-concept studies aiming to ameliorate defects resulting from inappropriate or pathological activation of the ISR.
机译:eIF2B是eIF2的专用鸟嘌呤核苷酸交换因子,eIF2是启动mRNA翻译所必需的GTPase。整合的应激反应(ISR)信号通路抑制eIF2B活性,减弱整体蛋白合成并上调一组应激反应蛋白。 eIF2B中的部分功能丧失突变会导致一种神经退行性疾病,称为消失白质病(VWMD)。之前,我们证明了小分子ISRIB是eIF2B()的特异性激活剂。在这里,我们报告各种VWMD突变破坏了十聚eIF2B全酶的稳定性,并削弱了其酶促活性。 ISRIB稳定了十聚体形式的VWMD突变体eIF2B,并将残留的催化活性恢复到野生型水平。此外,ISRIB阻断了携带这些突变的细胞中ISR的活化。因此,ISRIB有望成为概念验证研究中的宝贵工具,旨在减轻由于ISR的不适当或病理性激活而导致的缺陷。

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