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Autosomal recessive dilated cardiomyopathy due to DOLK mutations results from abnormal dystroglycan O-mannosylation
Authors:Lefeber Dirk J  de Brouwer Arjan P M  Morava Eva  Riemersma Moniek  Schuurs-Hoeijmakers Janneke H M  Absmanner Birgit  Verrijp Kiek  van den Akker Willem M R  Huijben Karin  Steenbergen Gerry  van Reeuwijk Jeroen  Jozwiak Adam  Zucker Nili  Lorber Avraham  Lammens Martin  Knopf Carlos  van Bokhoven Hans  Grünewald Stephanie  Lehle Ludwig  Kapusta Livia  Mandel Hanna  Wevers Ron A
Affiliation:Department of Neurology, Institute for Genetic and Metabolic Disease, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands. D.Lefeber@neuro.umcn.nl
Abstract:Genetic causes for autosomal recessive forms of dilated cardiomyopathy (DCM) are only rarely identified, although they are thought to contribute considerably to sudden cardiac death and heart failure, especially in young children. Here, we describe 11 young patients (5-13 years) with a predominant presentation of dilated cardiomyopathy (DCM). Metabolic investigations showed deficient protein N-glycosylation, leading to a diagnosis of Congenital Disorders of Glycosylation (CDG). Homozygosity mapping in the consanguineous families showed a locus with two known genes in the N-glycosylation pathway. In all individuals, pathogenic mutations were identified in DOLK, encoding the dolichol kinase responsible for formation of dolichol-phosphate. Enzyme analysis in patients' fibroblasts confirmed a dolichol kinase deficiency in all families. In comparison with the generally multisystem presentation in CDG, the nonsyndromic DCM in several individuals was remarkable. Investigation of other dolichol-phosphate dependent glycosylation pathways in biopsied heart tissue indicated reduced O-mannosylation of alpha-dystroglycan with concomitant functional loss of its laminin-binding capacity, which has been linked to DCM. We thus identified a combined deficiency of protein N-glycosylation and alpha-dystroglycan O-mannosylation in patients with nonsyndromic DCM due to autosomal recessive DOLK mutations.
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