Fibrillin-1 gene intron 56 polymorphism in Turkish children with mitral valve prolapse

Author:

Ozdemir Osman,Olgunturk Rana,Karaer Kadri,Ergun Mehmet Ali,Tunaoglu Fatma Sedef,Kula Serdar,Percin Ferda Emriye

Abstract

AbstractObjectiveMitral valvar prolapse is the most common anomaly of the mitral valve apparatus throughout childhood. Fibrillin is one of the structural components of the elastin-associated microfibrils found in the mitral valve. A case-controlled study has performed to investigate the relationship between fibrillin 1 gene intron 56 polymorphism and risk of mitral valvar prolapse in Turkish children.Patients and methodsA total of 77 patients with mitral valvar prolapse diagnosed by clinical evaluation and echocardiography and 89 normal children of same age and sex were studied. The fibrillin-1 gene intron 56 polymorphism was identified by the polymerase chain reaction-based restriction analysis.ResultsThere was a significant difference in the distribution of fibrillin-1 gene intron 56 genotypes (p = 0.0001) and allelic frequency (p = 0.0001) between the cases and the controls.ConclusionsPatients with mitral valvar prolapse have higher frequencies of fibrillin-1 gene intron 56 GC genotypes. Healthy children have higher frequencies of fibrillin-1 gene intron 56 CC genotypes. We speculate that the higher frequency of fibrillin-1 gene intron 56 G-allele increases the risk of mitral valvar prolapse.

Publisher

Cambridge University Press (CUP)

Subject

Cardiology and Cardiovascular Medicine,General Medicine,Pediatrics, Perinatology and Child Health

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1. OBSOLETE: Genetic Disorders Involving Valve Function;Reference Module in Biomedical Sciences;2018

2. Genetic Disorders Involving Valve Function;Encyclopedia of Cardiovascular Research and Medicine;2018

3. TGF-beta1 pathway activation and adherens junction molecular pattern in nonsyndromic mitral valve prolapse;Cardiovascular Pathology;2015-11

4. Unravelling the proteome of degenerative human mitral valves;PROTEOMICS;2015-06-08

5. Genetic Basis of Familial Valvular Heart Disease;Circulation: Cardiovascular Genetics;2012-10

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