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Mutations in PLK4, encoding a master regulator of centriole biogenesis, cause microcephaly, growth failure and retinopathy

Authors :
Martin, Carol-Anne
Ahmad, Ilyas
Klingseisen, Anna
Hussain, Muhammad Sajid
Bicknell, Louise S.
Leitch, Andrea
Nuernberg, Gudrun
Toliat, Mohammad Reza
Murray, Jennie E.
Hunt, David
Khan, Fawad
Ali, Zafar
Tinschert, Sigrid
Ding, James
Keith, Charlotte
Harley, Margaret E.
Heyn, Patricia
Mueller, Rolf
Hoffmann, Ingrid
Cormier-Daire, Valerie
Dollfus, Helene
Dupuis, Lucie
Bashamboo, Anu
McElreavey, Kenneth
Kariminejad, Ariana
Mendoza-Londono, Roberto
Moore, Anthony T.
Saggar, Anand
Schlechter, Catie
Weleber, Richard
Thiele, Holger
Altmueller, Janine
Hoehne, Wolfgang
Hurles, Matthew E.
Noegel, Angelika Anna
Baig, Shahid Mahmood
Nuernberg, Peter
Jackson, Andrew P.
Martin, Carol-Anne
Ahmad, Ilyas
Klingseisen, Anna
Hussain, Muhammad Sajid
Bicknell, Louise S.
Leitch, Andrea
Nuernberg, Gudrun
Toliat, Mohammad Reza
Murray, Jennie E.
Hunt, David
Khan, Fawad
Ali, Zafar
Tinschert, Sigrid
Ding, James
Keith, Charlotte
Harley, Margaret E.
Heyn, Patricia
Mueller, Rolf
Hoffmann, Ingrid
Cormier-Daire, Valerie
Dollfus, Helene
Dupuis, Lucie
Bashamboo, Anu
McElreavey, Kenneth
Kariminejad, Ariana
Mendoza-Londono, Roberto
Moore, Anthony T.
Saggar, Anand
Schlechter, Catie
Weleber, Richard
Thiele, Holger
Altmueller, Janine
Hoehne, Wolfgang
Hurles, Matthew E.
Noegel, Angelika Anna
Baig, Shahid Mahmood
Nuernberg, Peter
Jackson, Andrew P.
Publication Year :
2014

Abstract

Centrioles are essential for ciliogenesis. However, mutations in centriole biogenesis genes have been reported in primary microcephaly and Seckel syndrome, disorders without the hallmark clinical features of ciliopathies. Here we identify mutations in the genes encoding PLK4 kinase, a master regulator of centriole duplication, and its substrate TUBGCP6 in individuals with microcephalic primordial dwarfism and additional congenital anomalies, including retinopathy, thereby extending the human phenotypic spectrum associated with centriole dysfunction. Furthermore, we establish that different levels of impaired PLK4 activity result in growth and cilia phenotypes, providing a mechanism by which microcephaly disorders can occur with or without ciliopathic features.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1247373527
Document Type :
Electronic Resource