4.4 Article

Functional redundancy of the B9 proteins and nephrocystins in Caenorhabditis elegans ciliogenesis

Journal

MOLECULAR BIOLOGY OF THE CELL
Volume 19, Issue 5, Pages 2154-2168

Publisher

AMER SOC CELL BIOLOGY
DOI: 10.1091/mbc.E07-10-1070

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Funding

  1. National Institutes of Health [R01 DK65655]
  2. U. S. Department of Energy [DE-AC05-00OR22725]
  3. UAB Recessive Polycystic Kidney Disease Research and Translational Core Center [P30 DK074038]

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Meckel-Gruber syndrome (MKS), nephronophthisis (NPHP), and Joubert syndrome (JBTS) are a group of heterogeneous cystic kidney disorders with partially overlapping loci. Many of the proteins associated with these diseases interact and localize to cilia and/or basal bodies. One of these proteins is MKS1, which is disrupted in some MKS patients and contains a B9 motif of unknown function that is found in two other mammalian proteins, B9D2 and B9D1. Caenorhabditis elegans also has three B9 proteins: XBX-7 ( MKS1), TZA-1 ( B9D2), and TZA-2 ( B9D1). Herein, we report that the C. elegans B9 proteins form a complex that localizes to the base of cilia. Mutations in the B9 genes do not overtly affect cilia formation unless they are in combination with a mutation in nph-1 or nph-4, the homologues of human genes ( NPHP1 and NPHP4, respectively) that are mutated in some NPHP patients. Our data indicate that the B9 proteins function redundantly with the nephrocystins to regulate the formation and/or maintenance of cilia and dendrites in the amphid and phasmid ciliated sensory neurons. Together, these data suggest that the human homologues of the novel B9 genes B9D2 and B9D1 will be strong candidate loci for pathologies in human MKS, NPHP, and JBTS.

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