VPS13B/COH1 is the only known causative factor for Cohen syndrome, an early-onset autosomal recessive developmental disorder with intellectual inability, developmental delay, joint hypermobility, myopia, and facial dysmorphism as common features, but the molecular basis of VPS13B/COH1 in pathogenesis remains largely unclear. Here, we identify Sec23 interacting protein (Sec23IP) at the ER exit site (ERES) as a VPS13B adaptor that recruits VPS13B to ERES-Golgi interfaces. VPS13B interacts directly with Sec23IP via the VPS13 adaptor binding domain (VAB), and the interaction promotes the association between ERES and the Golgi. Disease-associated missense mutations of VPS13B-VAB impair the interaction with Sec23IP. Knockout of VPS13B or Sec23IP blocks the formation of tubular ERGIC, an unconventional cargo carrier that expedites ER-to-Golgi transport. In addition, depletion of VPS13B or Sec23IP delays ER export of procollagen, suggesting a link between procollagen secretion and joint laxity in patients with Cohen disease. Together, our study reveals a crucial role of VPS13B-Sec23IP interaction at the ERES-Golgi interface in the pathogenesis of Cohen syndrome.
Sec23IP recruits VPS13B/COH1 to ER exit site-Golgi interface for tubular ERGIC formation.
Sec23IP 将 VPS13B/COH1 募集到内质网出口位点-高尔基体界面,以形成管状 ERGIC
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作者:Du Yuanjiao, Fan Xinyu, Song Chunyu, Chang Weiping, Xiong Juan, Deng Lin, Ji Wei-Ke
| 期刊: | Journal of Cell Biology | 影响因子: | 6.400 |
| 时间: | 2024 | 起止号: | 2024 Dec 2; 223(12):e202402083 |
| doi: | 10.1083/jcb.202402083 | 研究方向: | 其它 |
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