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Atg16L2 a novel isoform of mammalian Atg16L that is not essential for canonical autophagy despite forming an Atg12–5-16L2 complex

机译:Atg16L2一种新型的哺乳动物Atg16L亚型尽管形成了Atg12-5-16L2复合体但对于自噬而言并非必需

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摘要

A large protein complex consisting of Atg5, Atg12 and Atg16L1 has recently been shown to be essential for the elongation of isolation membranes (also called phagophores) during mammalian autophagy. However, the precise function and regulation of the Atg12–5-16L1 complex has largely remained unknown. In this study we identified a novel isoform of mammalian Atg16L, termed Atg16L2, that consists of the same domain structures as Atg16L1. Biochemical analysis revealed that Atg16L2 interacts with Atg5 and self-oligomerizes to form an ~800-kDa complex, the same as Atg16L1 does. A subcellular distribution analysis indicated that, despite forming the Atg12–5-16L2 complex, Atg16L2 is not recruited to phagophores and is mostly present in the cytosol. The results also showed that Atg16L2 is unable to compensate for the function of Atg16L1 in autophagosome formation, and knockdown of endogenous Atg16L2 did not affect autophagosome formation, indicating that Atg16L2 does not possess the ability to mediate canonical autophagy. Moreover, a chimeric analysis between Atg16L1 and Atg16L2 revealed that their difference in function in regard to autophagy is entirely attributable to the difference between their middle regions that contain a coiled-coil domain. Based on the above findings, we propose that formation of the Atg12–5-16L complex is necessary but insufficient to mediate mammalian autophagy and that an additional function of the middle region (especially around amino acid residues 229–242) of Atg16L1 (e.g., interaction with an unidentified binding partner on phagophores) is required for autophagosome formation.
机译:最近发现,由Atg5,Atg12和Atg16L1组成的大型蛋白质复合物对于哺乳动物自噬过程中分离膜(也称为吞噬细胞)的延长至关重要。但是,Atg12-5-16L1复合物的精确功能和调控在很大程度上仍然未知。在这项研究中,我们确定了一种新型的哺乳动物Atg16L亚型,称为Atg16L2,它与Atg16L1具有相同的域结构。生化分析表明,Atg16L2与Atg5相互作用并自我寡聚,形成约800 kDa的复合物,与Atg16L1相同。亚细胞分布分析表明,尽管形成了Atg12-5-16L2复合体,但Atg16L2并未被募集到吞噬细胞中,并且大部分存在于细胞质中。结果还表明,Atg16L2不能补偿Atg16L1在自噬小体形成中的功能,而内源Atg16L2的敲低不影响自噬小体的形成,表明Atg16L2不具有介导典型自噬的能力。此外,在Atg16L1和Atg16L2之间进行的嵌合分析表明,它们在自噬方面的功能差异完全归因于它们在包含卷曲螺旋结构域的中间区域之间的差异。根据以上发现,我们建议形成Atg12-5-16L复合物是必要的,但不足以介导哺乳动物自噬,并且Atg16L1的中间区域(尤其是在氨基酸残基229-242附近)具有附加功能(例如,自噬体的形成需要与未鉴定的结合体在噬菌体上的相互作用)。

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