Department of Chemistry, Dartmouth College, Hanover, NH 03755, USA.
Department of Chemistry, Dartmouth College, Hanover, NH 03755, USA; Department of Biochemistry and Cell Biology, Geisel School of Medicine, Dartmouth College, Hanover, NH 03755, USA.
J Mol Biol. 2020 Oct 2;432(21):5752-5764. doi: 10.1016/j.jmb.2020.08.025. Epub 2020 Sep 5.
Selective autophagy is the capture of specific cytosolic contents in double-membrane vesicles that subsequently fuse with the vacuole or lysosome, thereby delivering cargo for degradation. Selective autophagy receptors (SARs) mark the cargo for degradation and, in yeast, recruit Atg11, the scaffolding protein for selective autophagy initiation. The mitochondrial protein Atg32 is the yeast SAR that mediates mitophagy, the selective autophagic capture of mitochondria. Atg11-Atg32 interactions concentrate Atg32 into puncta that are thought to represent sites of mitophagy initiation. However, it is unclear how Atg11 concentrates Atg32 to generate mitophagy initiation sites. We show here that the coiled coil 3 (CC3) domain of Atg11 is required for concentrating Atg32 into puncta. We determined the structure of the majority of the CC3, demonstrating that the CC3 forms a parallel homodimer whose dimer interface is formed by a small number of hydrophobic residues. We further show that the CC3 interface is not required for Atg11 dimerization but is required for shaping Atg32 into functional mitophagy initiation sites and for delivery of mitochondria to the vacuole. Our findings suggest that Atg11 self-interactions help concentrate SARs as a necessary precondition for cargo capture.
选择性自噬是指在双层膜囊泡中捕获特定的胞质内容物,随后与液泡或溶酶体融合,从而将货物递送至降解。选择性自噬受体 (SARs) 标记货物进行降解,在酵母中,招募 Atg11,这是选择性自噬起始的支架蛋白。线粒体蛋白 Atg32 是介导线粒体自噬的酵母 SAR,即选择性自噬捕获线粒体。Atg11-Atg32 相互作用将 Atg32 浓缩成斑点,这些斑点被认为是线粒体自噬起始的部位。然而,目前尚不清楚 Atg11 如何浓缩 Atg32 以产生线粒体自噬起始位点。我们在这里表明,Atg11 的卷曲螺旋 3 (CC3) 结构域是将 Atg32 浓缩成斑点所必需的。我们确定了 CC3 的大部分结构,表明 CC3 形成平行的同源二聚体,其二聚体界面由少数疏水性残基形成。我们进一步表明,CC3 界面不是 Atg11 二聚化所必需的,但对于将 Atg32 形成功能性线粒体自噬起始位点以及将线粒体递送至液泡是必需的。我们的发现表明,Atg11 自身相互作用有助于浓缩 SARs,作为货物捕获的必要前提条件。