内吞循环
内吞作用
内化
细胞生物学
泛素
信号转导衔接蛋白
生物
化学
信号转导
生物化学
受体
基因
作者
Peter Grones,Andreas De Meyer,Roman Pleskot,Evelien Mylle,Michael Kraus,Michaël Vandorpe,Klaas Yperman,Dominique Eeckhout,Jonathan Michael Dragwidge,Qihang Jiang,Jonah Nolf,Benjamin Pavie,Geert De Jaeger,Bert De Rybel,Daniël Van Damme
出处
期刊:Nature plants
[Springer Nature]
日期:2022-12-01
卷期号:8 (12): 1467-1483
被引量:11
标识
DOI:10.1038/s41477-022-01280-1
摘要
Endocytosis controls the perception of stimuli by modulating protein abundance at the plasma membrane. In plants, clathrin-mediated endocytosis is the most prominent internalization pathway and relies on two multimeric adaptor complexes, the AP-2 and the TPLATE complex (TPC). Ubiquitination is a well-established modification triggering endocytosis of cargo proteins, but how this modification is recognized to initiate the endocytic event remains elusive. Here we show that TASH3, one of the large subunits of TPC, recognizes ubiquitinated cargo at the plasma membrane via its SH3 domain-containing appendage. TASH3 lacking this evolutionary specific appendage modification allows TPC formation but the plants show severely reduced endocytic densities, which correlates with reduced endocytic flux. Moreover, comparative plasma membrane proteomics identified differential accumulation of multiple ubiquitinated cargo proteins for which we confirm altered trafficking. Our findings position TPC as a key player for ubiquitinated cargo internalization, allowing future identification of target proteins under specific stress conditions. Ubiquitination triggers endocytosis of proteins from the plasma membrane. The TASH3 subunit of the TPLATE complex recognizes ubiquitinated proteins via its SH3 domain-containing appendage and initiates their internalization from the plasma membrane.
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