4.8 Article

Mutations in VIPAR cause an arthrogryposis, renal dysfunction and cholestasis syndrome phenotype with defects in epithelial polarization

Journal

NATURE GENETICS
Volume 42, Issue 4, Pages 303-U55

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/ng.538

Keywords

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Funding

  1. Children Liver Disease Foundation
  2. Framework 6 IP EUTRACC [LSGH CT 2006037445]
  3. European Molecular Biology Organization [ASTF 121:2007]
  4. European Science Foundation [2008]
  5. Biotechnology and Biosciences Research Council [BB/H002308/1]
  6. ARC syndrome association
  7. Children Living with Inherited Metabolic Diseases (CLIMB)
  8. Birmingham Children's Hospital Research Foundation (BCHRF)
  9. WellChild
  10. Wellcome Trust
  11. Eunice Kennedy Shriver National Institute of Child Health and Human Development, US National Institutes of Health
  12. Biotechnology and Biological Sciences Research Council [BB/H002308/1] Funding Source: researchfish
  13. BBSRC [BB/H002308/1] Funding Source: UKRI

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Arthrogryposis, renal dysfunction and cholestasis syndrome (ARC) is a multisystem disorder associated with abnormalities in polarized liver and kidney cells. Mutations in VPS33B account for most cases of ARC. We identified mutations in VIPAR (also called C14ORF133) in individuals with ARC without VPS33B defects. We show that VIPAR forms a functional complex with VPS33B that interacts with RAB11A. Knockdown of vipar in zebrafish resulted in biliary excretion and E-cadherin defects similar to those in individuals with ARC. Vipar-and Vps33b-deficient mouse inner medullary collecting duct (mIMDC-3) cells expressed membrane proteins abnormally and had structural and functional tight junction defects. Abnormal Ceacam5 expression was due to mis-sorting toward lysosomal degradation, but reduced E-cadherin levels were associated with transcriptional downregulation. The VPS33B-VIPAR complex thus has diverse functions in the pathways regulating apical-basolateral polarity in the liver and kidney.

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