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Mutation Spectrum in RAB 3 GAP 1, RAB 3 GAP 2, and RAB 18 and Genotype-Phenotype Correlations in Warburg Micro Syndrome and Martsolf Syndrome.

Authors :
Handley, Mark T.
Morris‐Rosendahl, Deborah J.
Brown, Stephen
Macdonald, Fiona
Hardy, Carol
Bem, Danai
Carpanini, Sarah M.
Borck, Guntram
Martorell, Loreto
Izzi, Claudia
Faravelli, Francesca
Accorsi, Patrizia
Pinelli, Lorenzo
Basel‐Vanagaite, Lina
Peretz, Gabriela
Abdel‐Salam, Ghada M.H.
Zaki, Maha S.
Jansen, Anna
Mowat, David
Glass, Ian
Source :
Human Mutation; May2013, Vol. 34 Issue 5, p686-696, 11p
Publication Year :
2013

Abstract

ABSTRACT Warburg Micro syndrome and Martsolf syndrome ( MS) are heterogeneous autosomal-recessive developmental disorders characterized by brain, eye, and endocrine abnormalities. Causative biallelic germline mutations have been identified in RAB 3 GAP 1, RAB 3 GAP 2, or RAB 18, each of which encode proteins involved in membrane trafficking. This report provides an up to date overview of all known disease variants identified in 29 previously published families and 52 new families. One-hundred and forty-four Micro and nine Martsolf families were investigated, identifying mutations in RAB 3 GAP 1 in 41% of cases, mutations in RAB 3 GAP 2 in 7% of cases, and mutations in RAB 18 in 5% of cases. These are listed in Leiden Open source Variation Databases, which was created by us for all three genes. Genotype-phenotype correlations for these genes have now established that the clinical phenotypes in Micro syndrome and MS represent a phenotypic continuum related to the nature and severity of the mutations present in the disease genes, with more deleterious mutations causing Micro syndrome and milder mutations causing MS. RAB18 has not yet been linked to the RAB3 pathways, but mutations in all three genes cause an indistinguishable phenotype, making it likely that there is some overlap. There is considerable genetic heterogeneity for these disorders and further gene identification will help delineate these pathways. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10597794
Volume :
34
Issue :
5
Database :
Complementary Index
Journal :
Human Mutation
Publication Type :
Academic Journal
Accession number :
86927732
Full Text :
https://doi.org/10.1002/humu.22296