Sec23IP recruits the Cohen syndrome factor VPS13B/COH1 to ER exit site-Golgiinterface for tubular ERGIC formation
Du, Y.; Fan, X.; Song, C.; Ji, W.
Show abstract
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 is unknown. Here, we identify Sec23 interacting protein (Sec23IP) at 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 ERES-Golgi interface in the pathogenesis of Cohen syndrome.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The ER cholesterol sensor SCAP promotes CARTS biogenesis at ER-Golgi contact sites 98%
- Surf4 Promotes Endoplasmic Reticulum Exit of the Lysosomal Prosaposin-Progranulin Complex 96%
- SHIP164 is a Chorein Motif Containing Lipid Transport Protein that Controls Membrane Dynamics and Traffic at the Endosome-Golgi Interface. 96%
Similar papers in this journal
- The ORP9-ORP11 dimer promotes sphingomyelin synthesis 97%
- Src activates retrograde membrane traffic through phosphorylation of GBF1 96%
- C-terminal tagging, transmembrane domain hydrophobicity, and an ER retention motif influence the secretory trafficking of the inner nuclear membrane protein emerin 96%
Similar papers in this journal
- COP9 signalosome and PRMT5 methylosome complexes are essential regulators of Lis1-dynein based transport 96%
- PERK-dependent reciprocal crosstalk between ER and non-centrosomal microtubules coordinates ER architecture and cell shape 96%
- 5' UTR-mediated retention of eIF3 on 80S ribosomes promotes co-translational folding of ER membrane proteins 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.