芽殖酵母
网格蛋白
信号转导衔接蛋白
网格蛋白接合器蛋白
酵母
细胞生物学
重链
化学
萌芽
生物物理学
生物
酿酒酵母
生物化学
基因
内吞作用
信号转导
细胞
作者
Lucas A. Defelipe,Katharina Veith,Osvaldo Burastero,Т. А. Куприянова,Isabel Bento,Michal Skružný,Knut Kölbel,Charlotte Uetrecht,Roland Thuenauer,Maria García-Alai
标识
DOI:10.1038/s41467-024-54037-z
摘要
Clathrin forms a triskelion, or three-legged, network that regulates cellular processes by facilitating cargo internalization and trafficking in eukaryotes. Its N-terminal domain is crucial for interacting with adaptor proteins, which link clathrin to the membrane and engage with specific cargo. The N-terminal domain contains up to four adaptor-binding sites, though their role in preferential occupancy by adaptor proteins remains unclear. In this study, we examine the binding hierarchy of adaptors for clathrin, using integrative biophysical and structural approaches, along with in vivo functional experiments. We find that yeast epsin Ent5 has the highest affinity for clathrin, highlighting its key role in cellular trafficking. Epsins Ent1 and Ent2, crucial for endocytosis but thought to have redundant functions, show distinct binding patterns. Ent1 exhibits stronger interactions with clathrin than Ent2, suggesting a functional divergence toward actin binding. These results offer molecular insights into adaptor protein selectivity, suggesting they competitively bind clathrin while also targeting three different clathrin sites.
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