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Mutations in KIF7 link Joubert syndrome with Sonic Hedgehog signaling and microtubule dynamics.

J Clin Invest.. 2011-07;  121(7):2662-7
Dafinger C, Liebau MC, Elsayed SM, Hellenbroich Y, Boltshauser E, Korenke GC, Fabretti F, Janecke AR, Ebermann I, NÜrnberg G, NÜrnberg P, Zentgraf H, Koerber F, Addicks K, Elsobky E, Benzing T, Schermer B, Bolz HJ. 1Institute of Human Genetics and 2Renal Division, Department of Medicine and Centre for Molecular Medicine, and 3Department of Pediatrics, University of Cologne, Cologne, Germany. 4Medical Genetics Center, Cairo, Egypt. 5Children's Hospital, Ain Shams University, Cairo, Egypt. 6Institute of Human Genetics, University Hospital of Schleswig-Holstein, Campus LÜbeck, Germany. 7Department of Paediatric Neurology, University Children's Hospital of Zurich, Zurich, Switzerland. 8Klinikum
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摘要

Joubert syndrome (JBTS) is characterized by a specific brain malformation with various additional pathologies. It results from mutations in any one of at least 10 different genes, including NPHP1, which encodes nephrocystin-1. JBTS has been linked to dysfunction of primary cilia, since the gene products known to be associated with the disorder localize to this evolutionarily ancient organelle. Here we report the identification of a disease locus, JBTS12, with mutations in the KIF7 gene, an ortholog of the Drosophila kinesin Costal2, in a consanguineous JBTS family and subsequently in other JBTS patients. Interestingly, KIF7 is a known regulator of Hedgehog signaling and a putative ciliary motor protein. We foun... More

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