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TUBA1A mutations cause wide spectrum lissencephaly (smooth brain) and suggest that multiple neuronal migration pathways converge on alpha tubulins

We previously showed that mutations in LIS1 and DCX account for ∼85% of patients with the classic form of lissencephaly (LIS). Some rare forms of LIS are associated with a disproportionately small cerebellum, referred to as lissencephaly with cerebellar hypoplasia (LCH). Tubulin alpha1A (TUBA1A), en...

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Autores principales: Kumar, Ravinesh A., Pilz, Daniela T., Babatz, Timothy D., Cushion, Thomas D., Harvey, Kirsten, Topf, Maya, Yates, Laura, Robb, Stephanie, Uyanik, Gökhan, Mancini, Gracia M.S., Rees, Mark I., Harvey, Robert J., Dobyns, William B.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2893812/
https://www.ncbi.nlm.nih.gov/pubmed/20466733
http://dx.doi.org/10.1093/hmg/ddq182
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author Kumar, Ravinesh A.
Pilz, Daniela T.
Babatz, Timothy D.
Cushion, Thomas D.
Harvey, Kirsten
Topf, Maya
Yates, Laura
Robb, Stephanie
Uyanik, Gökhan
Mancini, Gracia M.S.
Rees, Mark I.
Harvey, Robert J.
Dobyns, William B.
author_facet Kumar, Ravinesh A.
Pilz, Daniela T.
Babatz, Timothy D.
Cushion, Thomas D.
Harvey, Kirsten
Topf, Maya
Yates, Laura
Robb, Stephanie
Uyanik, Gökhan
Mancini, Gracia M.S.
Rees, Mark I.
Harvey, Robert J.
Dobyns, William B.
author_sort Kumar, Ravinesh A.
collection PubMed
description We previously showed that mutations in LIS1 and DCX account for ∼85% of patients with the classic form of lissencephaly (LIS). Some rare forms of LIS are associated with a disproportionately small cerebellum, referred to as lissencephaly with cerebellar hypoplasia (LCH). Tubulin alpha1A (TUBA1A), encoding a critical structural subunit of microtubules, has recently been implicated in LIS. Here, we screen the largest cohort of unexplained LIS patients examined to date to determine: (i) the frequency of TUBA1A mutations in patients with lissencephaly, (ii) the spectrum of phenotypes associated with TUBA1A mutations and (iii) the functional consequences of different TUBA1A mutations on microtubule function. We identified novel and recurrent TUBA1A mutations in ∼1% of children with classic LIS and in ∼30% of children with LCH, making this the first major gene associated with the rare LCH phenotype. We also unexpectedly found a TUBA1A mutation in one child with agenesis of the corpus callosum and cerebellar hypoplasia without LIS. Thus, our data demonstrate a wider spectrum of phenotypes than previously reported and allow us to propose new recommendations for clinical testing. We also provide cellular and structural data suggesting that LIS-associated mutations of TUBA1A operate via diverse mechanisms that include disruption of binding sites for microtubule-associated proteins (MAPs).
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spelling pubmed-28938122010-06-30 TUBA1A mutations cause wide spectrum lissencephaly (smooth brain) and suggest that multiple neuronal migration pathways converge on alpha tubulins Kumar, Ravinesh A. Pilz, Daniela T. Babatz, Timothy D. Cushion, Thomas D. Harvey, Kirsten Topf, Maya Yates, Laura Robb, Stephanie Uyanik, Gökhan Mancini, Gracia M.S. Rees, Mark I. Harvey, Robert J. Dobyns, William B. Hum Mol Genet Articles We previously showed that mutations in LIS1 and DCX account for ∼85% of patients with the classic form of lissencephaly (LIS). Some rare forms of LIS are associated with a disproportionately small cerebellum, referred to as lissencephaly with cerebellar hypoplasia (LCH). Tubulin alpha1A (TUBA1A), encoding a critical structural subunit of microtubules, has recently been implicated in LIS. Here, we screen the largest cohort of unexplained LIS patients examined to date to determine: (i) the frequency of TUBA1A mutations in patients with lissencephaly, (ii) the spectrum of phenotypes associated with TUBA1A mutations and (iii) the functional consequences of different TUBA1A mutations on microtubule function. We identified novel and recurrent TUBA1A mutations in ∼1% of children with classic LIS and in ∼30% of children with LCH, making this the first major gene associated with the rare LCH phenotype. We also unexpectedly found a TUBA1A mutation in one child with agenesis of the corpus callosum and cerebellar hypoplasia without LIS. Thus, our data demonstrate a wider spectrum of phenotypes than previously reported and allow us to propose new recommendations for clinical testing. We also provide cellular and structural data suggesting that LIS-associated mutations of TUBA1A operate via diverse mechanisms that include disruption of binding sites for microtubule-associated proteins (MAPs). Oxford University Press 2010-07-15 2010-05-12 /pmc/articles/PMC2893812/ /pubmed/20466733 http://dx.doi.org/10.1093/hmg/ddq182 Text en © The Author 2010. Published by Oxford University Press http://creativecommons.org/licenses/by-nc/2.5/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Kumar, Ravinesh A.
Pilz, Daniela T.
Babatz, Timothy D.
Cushion, Thomas D.
Harvey, Kirsten
Topf, Maya
Yates, Laura
Robb, Stephanie
Uyanik, Gökhan
Mancini, Gracia M.S.
Rees, Mark I.
Harvey, Robert J.
Dobyns, William B.
TUBA1A mutations cause wide spectrum lissencephaly (smooth brain) and suggest that multiple neuronal migration pathways converge on alpha tubulins
title TUBA1A mutations cause wide spectrum lissencephaly (smooth brain) and suggest that multiple neuronal migration pathways converge on alpha tubulins
title_full TUBA1A mutations cause wide spectrum lissencephaly (smooth brain) and suggest that multiple neuronal migration pathways converge on alpha tubulins
title_fullStr TUBA1A mutations cause wide spectrum lissencephaly (smooth brain) and suggest that multiple neuronal migration pathways converge on alpha tubulins
title_full_unstemmed TUBA1A mutations cause wide spectrum lissencephaly (smooth brain) and suggest that multiple neuronal migration pathways converge on alpha tubulins
title_short TUBA1A mutations cause wide spectrum lissencephaly (smooth brain) and suggest that multiple neuronal migration pathways converge on alpha tubulins
title_sort tuba1a mutations cause wide spectrum lissencephaly (smooth brain) and suggest that multiple neuronal migration pathways converge on alpha tubulins
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2893812/
https://www.ncbi.nlm.nih.gov/pubmed/20466733
http://dx.doi.org/10.1093/hmg/ddq182
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