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The molecular genetics of Marfan syndrome and related disorders

Journal of Medical Genetics · 2006 · Vol. 43(10) · pp. 769–787
Peter N. RobinsonEmilio Arteaga‐SolisClair BaldockGwenaëlle Collod‐BéroudPatrick BoomsAnne De PaepeHarry C. DietzGao GuoPenny A HandfordDaniel P. JudgeCay M. KieltyBart LoeysDianna M. MilewiczAndreas NeyFrancesco RamirezDieter P. ReinhardtKerstin TiedemannPat WhitemanMaurice Godfrey

Abstract

Marfan syndrome (MFS), a relatively common autosomal dominant hereditary disorder of connective tissue with prominent manifestations in the skeletal, ocular, and cardiovascular systems, is caused by mutations in the gene for fibrillin-1 (FBN1). The leading cause of premature death in untreated individuals with MFS is acute aortic dissection, which often follows a period of progressive dilatation of the ascending aorta. Recent research on the molecular physiology of fibrillin and the pathophysiology of MFS and related disorders has changed our understanding of this disorder by demonstrating changes in growth factor signalling and in matrix-cell interactions. The purpose of this review is to provide a comprehensive overview of recent advances in the molecular biology of fibrillin and fibrillin-rich microfibrils. Mutations in FBN1 and other genes found in MFS and related disorders will be discussed, and novel concepts concerning the complex and multiple mechanisms of the pathogenesis of MFS will be explained.

Connective tissue disorders researchAortic Disease and Treatment ApproachesCardiac Valve Diseases and TreatmentsFibrillinMarfan syndromeConnective tissueMolecular geneticsConnective Tissue DisorderPathogenesisPathophysiologyMutationMedicineGenetics

MeSH terms

FibrillinsFibrillin-1RNA Splicing FactorsReceptor, Transforming Growth Factor-beta Type IReceptor, Transforming Growth Factor-beta Type IIAortic DissectionAnimalsContractile ProteinsHumansMarfan SyndromeMicrofilament ProteinsModels, BiologicalProtein DenaturationExtracellular Matrix ProteinsProtein Serine-Threonine Kinases

Funding

  • Howard Hughes Medical Institute
  • National Marfan Foundation
  • Deutsche Forschungsgemeinschaft
  • Vlaamse regering
  • National Institutes of Health
  • Canadian Institutes of Health Research
  • Medical Research Council
Citations
429
FWCI
17.07
field-weighted impact
References
290
Percentile
99%
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References
Nonsense-mediated mRNA decayin health and disease
Human Molecular Genetics · 1999 · 987 citations
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