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Regulation of PIDD auto-proteolysis and activity by the molecular chaperone Hsp90.

机译:通过分子伴侣Hsp90调节PIDD自蛋白水解和活性。

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摘要

In response to DNA damage, p53-induced protein with a death domain (PIDD) forms a complex called the PIDDosome, which either consists of PIDD, RIP-associated protein with a death domain and caspase-2, forming a platform for the activation of caspase-2, or contains PIDD, RIP1 and NEMO, important for NF-kappaB activation. PIDDosome activation is dependent on auto-processing of PIDD at two different sites, generating the fragments PIDD-C and PIDD-CC. Despite constitutive cleavage, endogenous PIDD remains inactive. In this study, we screened for novel PIDD regulators and identified heat shock protein 90 (Hsp90) as a major effector in both PIDD protein maturation and activation. Hsp90, together with p23, binds PIDD and inhibition of Hsp90 activity with geldanamycin efficiently disrupts this association and impairs PIDD auto-processing. Consequently, both PIDD-mediated NF-kappaB and caspase-2 activation are abrogated. Interestingly, PIDDosome formation itself is associated with Hsp90 release. Characterisation of cytoplasmic and nuclear pools of PIDD showed that active PIDD accumulates in the nucleus and that only cytoplasmic PIDD is bound to Hsp90. Finally, heat shock induces Hsp90 release from PIDD and PIDD nuclear translocation. Thus, Hsp90 has a major role in controlling PIDD functional activity.
机译:响应DNA损伤,p53诱导的带有死亡域(PIDD)的蛋白质形成称为PIDDosome的复合物,该复合物由PIDD,具有死亡域的RIP相关蛋白和caspase-2组成,形成了激活蛋白的平台。 caspase-2,或包含PIDD,RIP1和NEMO,对激活NF-κB非常重要。 PIDDosome激活取决于在两个不同位置对PIDD的自动处理,生成碎片PIDD-C和PIDD-CC。尽管进行本构性切割,但内源性PIDD仍然不活跃。在这项研究中,我们筛选了新型的PIDD调节剂,并确定了热激蛋白90(Hsp90)是PIDD蛋白成熟和激活的主要影响因子。 Hsp90与p23一起结合PIDD,并用格尔德霉素抑制Hsp90活性有效地破坏了这种结合并损害了PIDD的自动加工。因此,废除了PIDD介导的NF-κB和caspase-2激活。有趣的是,PIDDosome的形成本身与Hsp90的释放有关。 PIDD的细胞质和核库的表征表明,活跃的PIDD积聚在细胞核中,只有细胞质的PIDD与Hsp90结合。最后,热激诱导Hsp90从PIDD和PIDD核易位释放。因此,Hsp90在控制PIDD功能活动中起主要作用。

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