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应激诱导磷蛋白 1 在发育过程中有独特的共伴侣活性,并通过朊病毒蛋白调节细胞对缺血的反应。

Stress-inducible phosphoprotein 1 has unique cochaperone activity during development and regulates cellular response to ischemia via the prion protein.

机构信息

Robarts Research Institute, University of Western Ontario, London, Ontario, Canada.

出版信息

FASEB J. 2013 Sep;27(9):3594-607. doi: 10.1096/fj.13-232280. Epub 2013 May 31.

Abstract

Stress-inducible phosphoprotein 1 (STI1) is part of the chaperone machinery, but it also functions as an extracellular ligand for the prion protein. However, the physiological relevance of these STI1 activities in vivo is unknown. Here, we show that in the absence of embryonic STI1, several Hsp90 client proteins are decreased by 50%, although Hsp90 levels are unaffected. Mutant STI1 mice showed increased caspase-3 activation and 50% impairment in cellular proliferation. Moreover, placental disruption and lack of cellular viability were linked to embryonic death by E10.5 in STI1-mutant mice. Rescue of embryonic lethality in these mutants, by transgenic expression of the STI1 gene, supported a unique role for STI1 during embryonic development. The response of STI1 haploinsufficient mice to cellular stress seemed compromised, and mutant mice showed increased vulnerability to ischemic insult. At the cellular level, ischemia increased the secretion of STI1 from wild-type astrocytes by 3-fold, whereas STI1 haploinsufficient mice secreted half as much STI1. Interesting, extracellular STI1 prevented ischemia-mediated neuronal death in a prion protein-dependent way. Our study reveals essential roles for intracellular and extracellular STI1 in cellular resilience.

摘要

应激诱导磷蛋白 1(STI1)是伴侣机制的一部分,但它也作为朊病毒蛋白的细胞外配体发挥作用。然而,这些 STI1 活性在体内的生理相关性尚不清楚。在这里,我们表明在没有胚胎 STI1 的情况下,几种 Hsp90 客户蛋白减少了 50%,尽管 Hsp90 水平不受影响。突变 STI1 小鼠的 caspase-3 激活增加,细胞增殖能力降低 50%。此外,胎盘破坏和细胞活力缺乏与 E10.5 时 STI1 突变小鼠的胚胎死亡有关。通过转 STI1 基因对这些突变体进行胚胎致死性挽救,支持 STI1 在胚胎发育过程中的独特作用。STI1 杂合不足小鼠对细胞应激的反应似乎受损,突变小鼠对缺血性损伤的易感性增加。在细胞水平上,缺血使野生型星形胶质细胞分泌的 STI1 增加了 3 倍,而 STI1 杂合不足小鼠分泌的 STI1 只有一半。有趣的是,细胞外 STI1 以依赖于朊病毒蛋白的方式防止了缺血介导的神经元死亡。我们的研究揭示了细胞内和细胞外 STI1 在细胞弹性中的重要作用。

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