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Secretory kinase Fam20C tunes endoplasmic reticulum redox state via phosphorylation of Ero1?.


ABSTRACT: Family with sequence similarity 20C (Fam20C), the physiological Golgi casein kinase, phosphorylates numerous secreted proteins that are involved in a wide variety of biological processes. However, the role of Fam20C in regulating proteins in the endoplasmic reticulum (ER) lumen is largely unknown. Here, we report that Fam20C interacts with various luminal proteins and that its depletion results in a more reduced ER lumen. We further show that ER oxidoreductin 1? (Ero1?), the pivotal sulfhydryl oxidase that catalyzes disulfide formation in the ER, is phosphorylated by Fam20C in the Golgi apparatus and retrograde-transported to the ER mediated by ERp44. The phosphorylation of Ser145 greatly enhances Ero1? oxidase activity and is critical for maintaining ER redox homeostasis and promoting oxidative protein folding. Notably, phosphorylation of Ero1? is induced under hypoxia, reductive stress, and secretion-demanding conditions such as mammalian lactation. Collectively, our findings open a door to uncover how oxidative protein folding is regulated by phosphorylation in the secretory pathway.

SUBMITTER: Zhang J 

PROVIDER: S-EPMC6043849 | biostudies-literature | 2018 Jul

REPOSITORIES: biostudies-literature

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Secretory kinase Fam20C tunes endoplasmic reticulum redox state via phosphorylation of Ero1α.

Zhang Jianchao J   Zhu Qinyu Q   Wang Xi'e X   Yu Jiaojiao J   Chen Xinxin X   Wang Jifeng J   Wang Xi X   Xiao Junyu J   Wang Chih-Chen CC   Wang Lei L  

The EMBO journal 20180601 14


Family with sequence similarity 20C (Fam20C), the physiological Golgi casein kinase, phosphorylates numerous secreted proteins that are involved in a wide variety of biological processes. However, the role of Fam20C in regulating proteins in the endoplasmic reticulum (ER) lumen is largely unknown. Here, we report that Fam20C interacts with various luminal proteins and that its depletion results in a more reduced ER lumen. We further show that ER oxidoreductin 1α (Ero1α), the pivotal sulfhydryl o  ...[more]

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