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Insights into autophagosome maturation revealed by the structures of ATG5 with its interacting partners

机译:ATG5结构与其互动合作伙伴的结构展示了自噬成熟的见解

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Autophagy is a bulky catabolic process that responds to nutrient homeostasis and extracellular stress signals and is a conserved mechanism in all eukaryotes. When autophagy is induced, cellular components are sequestered within an autophagosome and finally degraded by subsequent fusion with a lysosome. During this process, the ATG12-ATG5 conjugate requires 2 different binding partners, ATG16L1 for autophagosome elongation and TECPR1 for lysosomal fusion. In our current study, we describe the crystal structures of human ATG5 in complex with an N-terminal domain of ATG16L1 as well as an internal AIR domain of TECPR1. Both binding partners exhibit a similar a-helical structure containing a conserved binding motif termed AFIM. Furthermore, we characterize the critical role of the C-terminal unstructured region of the AIR domain of TECPR1. These findings are further confirmed by biochemical and cell biological analyses. These results provide new insights into the molecular details of the autophagosome maturation process, from its elongation to its fusion with a lysosome.
机译:自噬是一种庞大的分解代谢过程,可响应营养稳态和细胞外应力信号,并且是所有真核生物中的保守机制。当诱导自噬时,细胞组分在自噬体内被隔离,最后通过随后与溶酶体融合来降解。在此过程中,ATG12-ATG5缀合物需要2个不同的结合伴侣ATG16L1用于自噬体伸长和TECPR1,用于溶酶体融合。在我们目前的研究中,我们描述了与ATG16L1的N-末端结构域的人ATG5的晶体结构以及TECPR1的内部空气结构域。两个结合伴侣都表现出类似的A螺旋结构,其含有保守的粘合基质被称为AFIM。此外,我们表征了Tecpr1的空气域的C末端非结构化区域的关键作用。通过生化和细胞生物学分析进一步证实这些发现。这些结果从其与溶酶体融合的伸长率来提供新的洞察分子细节。

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