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Differential phosphorylation-based regulation of αB-crystallin chaperone activity for multipass transmembrane proteins

机译:基于磷酸化的αB-晶状蛋白伴侣分子活性对多通道跨膜蛋白的调节

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摘要

We have previously shown that αB-crystallin (CRYAB), a small heat shock protein (sHsp) that prevents irreversible aggregation of unfolded protein by an ATP-independent chaperone activity, plays a pivotal role in the biogenesis of multipass transmembrane proteins (TMPs) assisting their folding from the cytosolic side of the endoplasmic reticulum (ER) (D'Agostino et al., 2013). Here we present evidence, based on phosphomimetic substitutions, that the three phosphorytable serine residues at position 19, 45 and 59 of CRYAB play a different regulatory role in this novel chaperone activity: S19 and S45 have a strong inhibitory effect, either alone or in combination, while S59 has not and counteracts the inhibition caused by single phosphomimetic substitutions at S19 and S45. Interestingly, all phosphomimetic substitutions determine the formation of smaller oligomeric complexes containing CRYAB, indicating that the inhibitory effect seen for S19 and S45 cannot be ascribed to the reduction of oligomerization frequently associated to a decreased chaperone activity. These results indicate that phosphorylation finely regulates the chaperone activity of CRYAB with multipass TMPs and suggest a pivotal role for S59 in this process.
机译:先前我们已经表明,αB-晶状蛋白(CRYAB)是一种小的热激蛋白(sHsp),可通过不依赖ATP的伴侣活性阻止未折叠蛋白的不可逆聚集,在多通道跨膜蛋白(TMP)的生物合成中起着关键作用它们从内质网(ER)的胞质侧折叠(D'Agostino et al。,2013)。在这里,我们基于模拟磷酸酯的替代方法提供证据,表明CRYAB的19、45和59位的三个可磷酸化丝氨酸残基在这种新型分子伴侣活性中起着不同的调节作用:S19和S45单独或联合使用均具有很强的抑制作用,而S59则没有,并抵消了由S19和S45处的单个磷酸模拟取代引起的抑制作用。有趣的是,所有拟磷酸酯取代决定了含有CRYAB的较小寡聚物复合物的形成,表明对S19和S45的抑制作用不能归因于通常与伴侣活性降低相关的寡聚反应的减少。这些结果表明,磷酸化可以很好地调节具有多程TMP的CRYAB的分子伴侣活性,并暗示S59在此过程中的关键作用。

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