生物
电池极性
细胞生物学
极性(国际关系)
粘液菌
细胞迁移
细胞骨架
调节器
细胞信号
伪足
细胞
信号转导
肌动蛋白
遗传学
基因
作者
Yihong Yang,Dong Li,Xiaoting Chao,Shashi Prakash Singh,Peter A. Thomason,Yonghong Yan,Meng‐Qiu Dong,Lei Li,Robert H. Insall,Huaqing Cai
标识
DOI:10.1083/jcb.202010096
摘要
Polarity is essential for diverse functions in many cell types. Establishing polarity requires targeting a network of specific signaling and cytoskeleton molecules to different subregions of the cell, yet the full complement of polarity regulators and how their activities are integrated over space and time to form morphologically and functionally distinct domains remain to be uncovered. Here, by using the model system Dictyostelium and exploiting the characteristic chemoattractant-stimulated translocation of polarly distributed molecules, we developed a proteomic screening approach, through which we identified a leucine-rich repeat domain–containing protein we named Leep1 as a novel polarity regulator. We combined imaging, biochemical, and phenotypic analyses to demonstrate that Leep1 localizes selectively at the leading edge of cells by binding to PIP3, where it modulates pseudopod and macropinocytic cup dynamics by negatively regulating the Scar/WAVE complex. The spatiotemporal coordination of PIP3 signaling, Leep1, and the Scar/WAVE complex provides a cellular mechanism for organizing protrusive structures at the leading edge.
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