首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Bag6 complex contains a minimal tail-anchor–targeting module and a mock BAG domain
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Bag6 complex contains a minimal tail-anchor–targeting module and a mock BAG domain

机译:Bag6复合体包含一个最小的尾锚定位模块和一个模拟BAG域

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摘要

BCL2-associated athanogene cochaperone 6 (Bag6) plays a central role in cellular homeostasis in a diverse array of processes and is part of the heterotrimeric Bag6 complex, which also includes ubiquitin-like 4A (Ubl4A) and transmembrane domain recognition complex 35 (TRC35). This complex recently has been shown to be important in the TRC pathway, the mislocalized protein degradation pathway, and the endoplasmic reticulum-associated degradation pathway. Here we define the architecture of the Bag6 complex, demonstrating that both TRC35 and Ubl4A have distinct C-terminal binding sites on Bag6 defining a minimal Bag6 complex. A crystal structure of the Bag6–Ubl4A dimer demonstrates that Bag6–BAG is not a canonical BAG domain, and this finding is substantiated biochemically. Remarkably, the minimal Bag6 complex defined here facilitates tail-anchored substrate transfer from small glutamine-rich tetratricopeptide repeat-containing protein α to TRC40. These findings provide structural insight into the complex network of proteins coordinated by Bag6.
机译:BCL2相关的致癌基因伴侣蛋白6(Bag6)在多种过程中的细胞稳态中起着核心作用,并且是异源三聚体Bag6复合物的一部分,该复合物还包括泛素样4A(Ubl4A)和跨膜结构域识别复合物35(TRC35)。 。最近已经显示出这种复合物在TRC途径,错位的蛋白质降解途径和与内质网相关的降解途径中很重要。在这里,我们定义了Bag6复合物的体系结构,表明TRC35和Ubl4A在Bag6上均具有不同的C末端结合位点,从而定义了最小的Bag6复合物。 Bag6-Ubl4A二聚体的晶体结构表明Bag6-BAG不是典型的BAG域,这一发现在生化上得到了证实。值得注意的是,此处定义的最小的Bag6复合物促进了尾部锚定的底物从富含谷氨酰胺的富含四三肽重复序列的小蛋白质α转移到TRC40。这些发现提供了对由Bag6协调的复杂蛋白质网络的结构见解。

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