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Biallelic mutations in SNX14 cause a syndromic form of cerebellar atrophy and lysosome-autophagosome dysfunction.

Authors :
Akizu, Naiara
Akizu, Naiara
Cantagrel, Vincent
Zaki, Maha S
Al-Gazali, Lihadh
Wang, Xin
Rosti, Rasim Ozgur
Dikoglu, Esra
Gelot, Antoinette Bernabe
Rosti, Basak
Vaux, Keith K
Scott, Eric M
Silhavy, Jennifer L
Schroth, Jana
Copeland, Brett
Schaffer, Ashleigh E
Gordts, Philip LSM
Esko, Jeffrey D
Buschman, Matthew D
Field, Seth J
Napolitano, Gennaro
Abdel-Salam, Ghada M
Ozgul, R Koksal
Sagıroglu, Mahmut Samil
Azam, Matloob
Ismail, Samira
Aglan, Mona
Selim, Laila
Mahmoud, Iman G
Abdel-Hadi, Sawsan
Badawy, Amera El
Sadek, Abdelrahim A
Mojahedi, Faezeh
Kayserili, Hulya
Masri, Amira
Bastaki, Laila
Temtamy, Samia
Müller, Ulrich
Desguerre, Isabelle
Casanova, Jean-Laurent
Dursun, Ali
Gunel, Murat
Gabriel, Stacey B
de Lonlay, Pascale
Gleeson, Joseph G
Akizu, Naiara
Akizu, Naiara
Cantagrel, Vincent
Zaki, Maha S
Al-Gazali, Lihadh
Wang, Xin
Rosti, Rasim Ozgur
Dikoglu, Esra
Gelot, Antoinette Bernabe
Rosti, Basak
Vaux, Keith K
Scott, Eric M
Silhavy, Jennifer L
Schroth, Jana
Copeland, Brett
Schaffer, Ashleigh E
Gordts, Philip LSM
Esko, Jeffrey D
Buschman, Matthew D
Field, Seth J
Napolitano, Gennaro
Abdel-Salam, Ghada M
Ozgul, R Koksal
Sagıroglu, Mahmut Samil
Azam, Matloob
Ismail, Samira
Aglan, Mona
Selim, Laila
Mahmoud, Iman G
Abdel-Hadi, Sawsan
Badawy, Amera El
Sadek, Abdelrahim A
Mojahedi, Faezeh
Kayserili, Hulya
Masri, Amira
Bastaki, Laila
Temtamy, Samia
Müller, Ulrich
Desguerre, Isabelle
Casanova, Jean-Laurent
Dursun, Ali
Gunel, Murat
Gabriel, Stacey B
de Lonlay, Pascale
Gleeson, Joseph G
Source :
Nature genetics; vol 47, iss 5, 528-534; 1061-4036
Publication Year :
2015

Abstract

Pediatric-onset ataxias often present clinically as developmental delay and intellectual disability, with prominent cerebellar atrophy as a key neuroradiographic finding. Here we describe a new clinically distinguishable recessive syndrome in 12 families with cerebellar atrophy together with ataxia, coarsened facial features and intellectual disability, due to truncating mutations in the sorting nexin gene SNX14, encoding a ubiquitously expressed modular PX domain-containing sorting factor. We found SNX14 localized to lysosomes and associated with phosphatidylinositol (3,5)-bisphosphate, a key component of late endosomes/lysosomes. Patient-derived cells showed engorged lysosomes and a slower autophagosome clearance rate upon autophagy induction by starvation. Zebrafish morphants for snx14 showed dramatic loss of cerebellar parenchyma, accumulation of autophagosomes and activation of apoptosis. Our results characterize a unique ataxia syndrome due to biallelic SNX14 mutations leading to lysosome-autophagosome dysfunction.

Details

Database :
OAIster
Journal :
Nature genetics; vol 47, iss 5, 528-534; 1061-4036
Notes :
application/pdf, Nature genetics vol 47, iss 5, 528-534 1061-4036
Publication Type :
Electronic Resource
Accession number :
edsoai.on1287329711
Document Type :
Electronic Resource