RTKN-1/Rhotekin shields endosome-associated F-actin from disassembly to ensure endocytic recycling

Author:

Yan Yanling1,Liu Shuai1,Hu Can1,Xie Chaoyi1,Zhao Linyue1,Wang Shimin1,Zhang Wenjuan1,Cheng Zihang1,Gao Jinghu1ORCID,Fu Xin1,Yang Zhenrong1,Wang Xianghong1,Zhang Jing1,Lin Long12,Shi Anbing12ORCID

Affiliation:

1. Department of Biochemistry and Molecular Biology, School of Basic Medicine, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, China

2. Cell Architecture Research Institute, Huazhong University of Science and Technology, Wuhan, Hubei, China

Abstract

Cargo sorting and the subsequent membrane carrier formation require a properly organized endosomal actin network. To better understand the actin dynamics during endocytic recycling, we performed a genetic screen in C. elegans and identified RTKN-1/Rhotekin as a requisite to sustain endosome-associated actin integrity. Loss of RTKN-1 led to a prominent decrease in actin structures and basolateral recycling defects. Furthermore, we showed that the presence of RTKN-1 thwarts the actin disassembly competence of UNC-60A/cofilin. Consistently, in RTKN-1–deficient cells, UNC-60A knockdown replenished actin structures and alleviated the recycling defects. Notably, an intramolecular interaction within RTKN-1 could mediate the formation of oligomers. Overexpression of an RTKN-1 mutant form that lacks self-binding capacity failed to restore actin structures and recycling flow in rtkn-1 mutants. Finally, we demonstrated that SDPN-1/Syndapin acts to direct the recycling endosomal dwelling of RTKN-1 and promotes actin integrity there. Taken together, these findings consolidated the role of SDPN-1 in organizing the endosomal actin network architecture and introduced RTKN-1 as a novel regulatory protein involved in this process.

Funder

National Natural Science Foundation of China

Major Research Plan of the Natural Science Foundation of China

National Science Fund for Distinguished Young Scholars

National Key Research and Design Program of China

Natural Science Foundation of China

Publisher

Rockefeller University Press

Subject

Cell Biology

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