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内收蛋白-A 通过衔接蛋白协调神经分泌囊泡的出芽和融合。

Endophilin-A coordinates priming and fusion of neurosecretory vesicles via intersectin.

机构信息

European Neuroscience Institute-A Joint Initiative of the University Medical Center Göttingen and the Max Planck Society Göttingen, Göttingen, Germany.

University of Copenhagen, Department for Neuroscience, Faculty of Health and Medical Sciences, Copenhagen, Denmark.

出版信息

Nat Commun. 2020 Mar 9;11(1):1266. doi: 10.1038/s41467-020-14993-8.

Abstract

Endophilins-A are conserved endocytic adaptors with membrane curvature-sensing and -inducing properties. We show here that, independently of their role in endocytosis, endophilin-A1 and endophilin-A2 regulate exocytosis of neurosecretory vesicles. The number and distribution of neurosecretory vesicles were not changed in chromaffin cells lacking endophilin-A, yet fast capacitance and amperometry measurements revealed reduced exocytosis, smaller vesicle pools and altered fusion kinetics. The levels and distributions of the main exocytic and endocytic factors were unchanged, and slow compensatory endocytosis was not robustly affected. Endophilin-A's role in exocytosis is mediated through its SH3-domain, specifically via a direct interaction with intersectin-1, a coordinator of exocytic and endocytic traffic. Endophilin-A not able to bind intersectin-1, and intersectin-1 not able to bind endophilin-A, resulted in similar exocytic defects in chromaffin cells. Altogether, we report that two endocytic proteins, endophilin-A and intersectin-1, are enriched on neurosecretory vesicles and regulate exocytosis by coordinating neurosecretory vesicle priming and fusion.

摘要

内收蛋白-A 是保守的内吞作用衔接蛋白,具有膜曲率感应和诱导特性。我们在这里表明,内收蛋白-A1 和内收蛋白-A2 独立于其在胞吞作用中的作用,调节神经分泌囊泡的胞吐作用。缺乏内收蛋白-A 的嗜铬细胞中神经分泌囊泡的数量和分布没有改变,然而快速电容和安培测量显示出胞吐作用减少、囊泡池更小和融合动力学改变。主要的胞吐作用和胞吞作用因子的水平和分布没有改变,缓慢的补偿性胞吞作用也没有受到明显影响。内收蛋白-A 在胞吐作用中的作用是通过其 SH3 结构域介导的,特别是通过与衔接蛋白-1 的直接相互作用,衔接蛋白-1 是胞吐作用和胞吞作用的协调者。不能与衔接蛋白-1 结合的内收蛋白-A 和不能与内收蛋白-A 结合的衔接蛋白-1,导致嗜铬细胞中出现类似的胞吐作用缺陷。总的来说,我们报告说,两种内吞作用蛋白,内收蛋白-A 和衔接蛋白-1,在神经分泌囊泡上丰富,并通过协调神经分泌囊泡的引发和融合来调节胞吐作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b91/7062783/0308edd02cbd/41467_2020_14993_Fig1_HTML.jpg

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