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A cilia-independent function of BBSome mediated by DLK-MAPK signaling in C. elegans photosensation.


ABSTRACT: Bardet-Biedl syndrome (BBS) is a genetic disorder that affects primary cilia. BBSome, a protein complex composed of eight BBS proteins, regulates the structure and function of cilia, and its malfunction causes BBS in humans. Here, we report a cilia-independent function of BBSome. To identify genes that regulate the C. elegans photoreceptor protein LITE-1 in ciliated ASH photosensory neurons, we performed a genetic screen and isolated bbs mutants. Functional analysis revealed that BBSome regulates LITE-1 protein stability independently of cilia. Through another round of genetic screening, we found that this cilia-independent function of BBSome is mediated by DLK-MAPK signaling, which acts downstream of BBSome to control LITE-1 stability via Rab5-mediated endocytosis. BBSome exerts its function by regulating the expression of DLK. BBSome also regulates the expression of LZK, a mammalian DLK in human cells. These studies identify a cilia-independent function of BBSome and uncover DLK as an evolutionarily conserved BBSome effector.

SUBMITTER: Zhang X 

PROVIDER: S-EPMC9233093 | biostudies-literature | 2022 Jun

REPOSITORIES: biostudies-literature

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A cilia-independent function of BBSome mediated by DLK-MAPK signaling in C. elegans photosensation.

Zhang Xinxing X   Liu Jinzhi J   Pan Tong T   Ward Alex A   Liu Jianfeng J   Xu X Z Shawn XZS  

Developmental cell 20220531 12


Bardet-Biedl syndrome (BBS) is a genetic disorder that affects primary cilia. BBSome, a protein complex composed of eight BBS proteins, regulates the structure and function of cilia, and its malfunction causes BBS in humans. Here, we report a cilia-independent function of BBSome. To identify genes that regulate the C. elegans photoreceptor protein LITE-1 in ciliated ASH photosensory neurons, we performed a genetic screen and isolated bbs mutants. Functional analysis revealed that BBSome regulate  ...[more]

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