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细胞膜表面蛋白聚集触发内吞作用以维持质膜蛋白稳态。

Cell surface protein aggregation triggers endocytosis to maintain plasma membrane proteostasis.

机构信息

MRC Laboratory of Molecular Biology, Francis Crick Avenue, Cambridge, CB2 0QH, UK.

AstraZeneca, R&D BioPharma, Antibody Discovery & Protein Engineering, Granta Park, Cambridge, CB21 6GH, UK.

出版信息

Nat Commun. 2023 Feb 28;14(1):947. doi: 10.1038/s41467-023-36496-y.

Abstract

The ability of cells to manage consequences of exogenous proteotoxicity is key to cellular homeostasis. While a plethora of well-characterised machinery aids intracellular proteostasis, mechanisms involved in the response to denaturation of extracellular proteins remain elusive. Here we show that aggregation of protein ectodomains triggers their endocytosis via a macroendocytic route, and subsequent lysosomal degradation. Using ERBB2/HER2-specific antibodies we reveal that their cross-linking ability triggers specific and fast endocytosis of the receptor, independent of clathrin and dynamin. Upon aggregation, canonical clathrin-dependent cargoes are redirected into the aggregation-dependent endocytosis (ADE) pathway. ADE is an actin-driven process, which morphologically resembles macropinocytosis. Physical and chemical stress-induced aggregation of surface proteins also triggers ADE, facilitating their degradation in the lysosome. This study pinpoints aggregation of extracellular domains as a trigger for rapid uptake and lysosomal clearance which besides its proteostatic function has potential implications for the uptake of pathological protein aggregates and antibody-based therapies.

摘要

细胞对外源蛋白毒性后果进行管理的能力是细胞内稳态的关键。虽然有大量特征明确的机制有助于细胞内蛋白质稳态,但对于细胞对外源蛋白质变性的反应机制仍不清楚。在这里,我们发现蛋白外结构域的聚集通过巨吞饮途径触发它们的内吞作用,并随后进行溶酶体降解。使用 ERBB2/HER2 特异性抗体,我们揭示了它们的交联能力可触发受体的特异性和快速内吞作用,这与网格蛋白和动力蛋白无关。在聚集后,经典的网格蛋白依赖性货物被重新定向到聚集依赖性内吞作用(ADE)途径。ADE 是一个肌动蛋白驱动的过程,其形态类似于大胞饮作用。表面蛋白的物理和化学应激诱导聚集也会触发 ADE,从而促进它们在溶酶体中的降解。这项研究指出,细胞外结构域的聚集是快速摄取和溶酶体清除的触发因素,除了其在蛋白质稳态方面的功能外,它还有可能与病理性蛋白质聚集体的摄取和基于抗体的治疗方法有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b301/9974993/9eee3805ff61/41467_2023_36496_Fig1_HTML.jpg

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