Title | Mutations in KATNB1 cause complex cerebral malformations by disrupting asymmetrically dividing neural progenitors. |
Publication Type | Journal Article |
Year of Publication | 2014 |
Authors | Mishra-Gorur, K, Çağlayan, AOkay, Schaffer, AE, Chabu, C, Henegariu, O, Vonhoff, F, Akgümüş, GTuğce, Nishimura, S, Han, W, Tu, S, Baran, B, Gümüş, H, Dilber, C, Zaki, MS, Hossni, HAA, Rivière, J-B, Kayserili, H, Spencer, EG, Rosti, RO, Schroth, J, Per, H, Caglar, C, Çağlar, Ç, Dölen, D, Baranoski, JF, Kumandaş, S, Minja, FJ, E Erson-Omay, Z, Mane, SM, Lifton, RP, Xu, T, Keshishian, H, Dobyns, WB, Chi, NC, Šestan, N, Louvi, A, Bilguvar, K, Yasuno, K, Gleeson, JG, Günel, M |
Journal | Neuron |
Volume | 84 |
Issue | 6 |
Pagination | 1226-39 |
Date Published | 2014 Dec 17 |
ISSN | 1097-4199 |
Keywords | Adenosine Triphosphatases, Animals, Brain, Cell Count, Cell Division, Dendrites, Drosophila, Drosophila Proteins, Humans, Katanin, Mice, Microcephaly, Microtubule-Associated Proteins, Mutation, Neural Stem Cells, Neurogenesis, Optic Lobe, Nonmammalian, Spindle Apparatus, Zebrafish |
Abstract | Exome sequencing analysis of over 2,000 children with complex malformations of cortical development identified five independent (four homozygous and one compound heterozygous) deleterious mutations in KATNB1, encoding the regulatory subunit of the microtubule-severing enzyme Katanin. Mitotic spindle formation is defective in patient-derived fibroblasts, a consequence of disrupted interactions of mutant KATNB1 with KATNA1, the catalytic subunit of Katanin, and other microtubule-associated proteins. Loss of KATNB1 orthologs in zebrafish (katnb1) and flies (kat80) results in microcephaly, recapitulating the human phenotype. In the developing Drosophila optic lobe, kat80 loss specifically affects the asymmetrically dividing neuroblasts, which display supernumerary centrosomes and spindle abnormalities during mitosis, leading to cell cycle progression delays and reduced cell numbers. Furthermore, kat80 depletion results in dendritic arborization defects in sensory and motor neurons, affecting neural architecture. Taken together, we provide insight into the mechanisms by which KATNB1 mutations cause human cerebral cortical malformations, demonstrating its fundamental role during brain development. |
DOI | 10.1016/j.neuron.2014.12.014 |
Alternate Journal | Neuron |
PubMed ID | 25521378 |
PubMed Central ID | PMC5024344 |
Grant List | U01MH081896 / MH / NIMH NIH HHS / United States UM1 HG006504 / HG / NHGRI NIH HHS / United States R01 NS041537 / NS / NINDS NIH HHS / United States U54HG006504 / HG / NHGRI NIH HHS / United States U54 HG006504 / HG / NHGRI NIH HHS / United States R01MH103616 / MH / NIMH NIH HHS / United States / / Howard Hughes Medical Institute / United States R01 CA069408 / CA / NCI NIH HHS / United States K99 HD082337 / HD / NICHD NIH HHS / United States U01 MH081896 / MH / NIMH NIH HHS / United States P01 HD070494 / HD / NICHD NIH HHS / United States R00 HD082337 / HD / NICHD NIH HHS / United States P01HD070494 / HD / NICHD NIH HHS / United States R01 MH103616 / MH / NIMH NIH HHS / United States R01NS041537 / NS / NINDS NIH HHS / United States |