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Phosphorylation of SNX27 by MAPK11/14 links cellular stress-signaling pathways with endocytic recycling.


ABSTRACT: Endocytosed proteins can be delivered to lysosomes for degradation or recycled to either the trans-Golgi network or the plasma membrane. It remains poorly understood how the recycling versus degradation of cargoes is determined. Here, we show that multiple extracellular stimuli, including starvation, LPS, IL-6, and EGF treatment, can strongly inhibit endocytic recycling of multiple cargoes through the activation of MAPK11/14. The stress-induced kinases in turn directly phosphorylate SNX27, a key regulator of endocytic recycling, at serine 51 (Ser51). Phosphorylation of SNX27 at Ser51 alters the conformation of its cargo-binding pocket and decreases the interaction between SNX27 and cargo proteins, thereby inhibiting endocytic recycling. Our study indicates that endocytic recycling is highly dynamic and can crosstalk with cellular stress-signaling pathways. Suppression of endocytic recycling and enhancement of receptor lysosomal degradation serve as new mechanisms for cells to cope with stress and save energy.

SUBMITTER: Mao L 

PROVIDER: S-EPMC7901142 | biostudies-literature | 2021 Apr

REPOSITORIES: biostudies-literature

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Phosphorylation of SNX27 by MAPK11/14 links cellular stress-signaling pathways with endocytic recycling.

Mao Lejiao L   Liao Chenyi C   Qin Jiao J   Gong Yanqiu Y   Zhou Yifei Y   Li Shasha S   Liu Zhe Z   Deng Huaqing H   Deng Wankun W   Sun Qingxiang Q   Mo Xianming X   Xue Yu Y   Billadeau Daniel D DD   Dai Lunzhi L   Li Guohui G   Jia Da D  

The Journal of cell biology 20210401 4


Endocytosed proteins can be delivered to lysosomes for degradation or recycled to either the trans-Golgi network or the plasma membrane. It remains poorly understood how the recycling versus degradation of cargoes is determined. Here, we show that multiple extracellular stimuli, including starvation, LPS, IL-6, and EGF treatment, can strongly inhibit endocytic recycling of multiple cargoes through the activation of MAPK11/14. The stress-induced kinases in turn directly phosphorylate SNX27, a key  ...[more]

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