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首页> 外文期刊>Scientific reports. >Solution structure of the autophagy-related protein LC3C reveals a polyproline II motif on a mobile tether with phosphorylation site
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Solution structure of the autophagy-related protein LC3C reveals a polyproline II motif on a mobile tether with phosphorylation site

机译:自噬相关蛋白质LC3C的溶液结构揭示了具有磷酸化位点的移动系绳上的聚丙烯II基序

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(Macro-)autophagy is a compartmental degradation pathway conserved from yeast to mammals. The yeast protein Atg8 mediates membrane tethering/hemifusion and cargo recruitment and is essential for autophagy. The human MAP1LC3/GABARAP family proteins show high sequence identity with Atg8, but MAP1LC3C is distinguished by a conspicuous amino-terminal extension with unknown functional significance. We have determined the high-resolution three-dimensional structure and measured the backbone dynamics of MAP1LC3C by NMR spectroscopy. From Ser18 to Ala120, MAP1LC3C forms an α-helix followed by the ubiquitin-like tertiary fold with two hydrophobic binding pockets used by MAP1LC3/GABARAP proteins to recognize targets presenting LC3-interacting regions (LIRs). Unlike other MAP1LC3/GABARAP proteins, the amino-terminal region of MAP1LC3C does not form a stable helix αsub1/sub but a "sticky arm" consisting of a polyproline II motif on a flexible linker. Ser18 at the interface between this linker and the structural core can be phosphorylated in vitro by protein kinase A, which causes additional conformational heterogeneity as monitored by NMR spectroscopy and molecular dynamics simulations, including changes in the LIR-binding interface. Based on these results we propose that the amino-terminal polyproline II motif mediates specific interactions with the microtubule cytoskeleton and that Ser18 phosphorylation modulates the interplay of MAP1LC3C with its various target proteins.
机译:(宏观)自噬是一种单独的降解途径,从酵母到哺乳动物保守。酵母蛋白ATG8介导膜束缚/偏离和货物募集,对自噬是必不可少的。人MAP1LC3 / GABARAP系列蛋白质显示出高序列同一性与ATG8,但MAP1LC3C通过具有未知功能意义的显着氨基末端延伸来区分。我们已经确定了高分辨率的三维结构,并通过NMR光谱测量了MAP1LC3C的骨干动力学。从Ser18到Ala120,MAP1LC3C形成α-螺旋,然后形成泛素状的叔折叠,用MAP1LC3 / GABARAP蛋白使用的两个疏水粘合袋,以识别呈现LC3相互作用区域(LIR)的靶标。与其他MAP1LC3 / GABARAP蛋白不同,MAP1LC3C的氨基末端区域不形成稳定的螺旋α<亚> 1 ,但是由柔性接头上的聚丙烯II基序组成的“粘性臂”。在该接头和结构芯之间的界面处的Ser18可以通过蛋白激酶A体外磷酸化,这使得通过NMR光谱和分子动力学模拟监测的额外构象异质性,包括LIR结合界面的变化。基于这些结果,我们提出氨基 - 末端聚丙烯II基序与微管细胞骨架的特异性相互作用介导,并且SER18磷酸化调节MAP1LC3C与其各种靶蛋白的相互作用。

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