Update of the pompe disease mutation database with 60 novel GAA sequence variants and additional studies on the functional effect of 34 previously reported variants.
Details
Serval ID
serval:BIB_89C63A2AA69E
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Update of the pompe disease mutation database with 60 novel GAA sequence variants and additional studies on the functional effect of 34 previously reported variants.
Journal
Human mutation
Working group(s)
GAA Database Consortium
Contributor(s)
Augoustides-Savvopoulou P., Ausems M., Llona J.B., Bautista Lorite J., van der Beek N., Bonafe L., Cuk M., D'Hooghe M., Engelen B., Farouk A., Fumic K., Garcia-Delgado E., Herzog A., Hurst J., Jones S., Kariminejad M.H., Küçükçongar A., Lissens W., Lund A., Majoor-Krakauer D., Kumamoto S., Maravi E., Marie S., Mengel E., Mavridou I., Munteis Olivas E., Najmabadi H., Okumiya T., Peric S., Paschke E., Plecko B., Robberecht W., Serdaroglu P., Shboul M., Tansek M.Z., Tarnutzer A., Stojanovic V.R., Tylki-Szymanska A., Venâncio M., Verhoeven K.
ISSN
1098-1004 (Electronic)
ISSN-L
1059-7794
Publication state
Published
Issued date
08/2012
Peer-reviewed
Oui
Volume
33
Number
8
Pages
1161-1165
Language
english
Notes
Publication types: Journal Article ; Research Support, Non-U.S. Gov't
Publication Status: ppublish
Publication Status: ppublish
Abstract
Pompe disease is an autosomal recessive lysosomal glycogen storage disorder, characterized by progressive muscle weakness. Deficiency of acid α-glucosidase (EC; 3.2.1.20/3) can be caused by numerous pathogenic variants in the GAA gene. The Pompe Disease Mutation Database at http://www.pompecenter.nl aims to list all variants and their effect. This update reports on 94 variants. We examined 35 novel and 34 known mutations by site-directed mutagenesis and transient expression in COS-7 cells or HEK293T cells. Each of these mutations was given a severity rating using a previously published system, based on the level of acid α-glucosidase activity in medium and transfected cells and on the quantity and quality of the different molecular mass species in the posttranslational modification and transport of acid α-glucosidase. This approach enabled to classify 55 missense mutations as pathogenic and 13 as likely nonpathogenic. Based on their nature and the use of in silico analysis (Alamut® software), 12 of the additional 25 novel mutations were predicted to be pathogenic including 4 splicing mutations, 6 mutations leading to frameshift, and 2 point mutations causing stop codons. Seven of the additional mutations were considered nonpathogenic (4 silent and 3 occurring in intron regions), and 6 are still under investigation.
Keywords
Databases, Genetic, Genetic Predisposition to Disease, Glycogen Storage Disease Type II/genetics, Humans, Mutation, alpha-Glucosidases/genetics
Pubmed
Web of science
Create date
12/02/2016 15:31
Last modification date
04/05/2024 7:06