Gloria T Haskell, Brian C Jensen, Cecile Skrzynia, Thelsa Pulikkotil, Christian R Tilley, Yurong Lu, Daniel S Marchuk, Leigh Ann Samsa, Kirk C Wilhelmsen, Ethan Lange, Cam Patterson, James P Evans, Jonathan S Berg
{"title":"Genetic Complexity of Mitral Valve Prolapse Revealed by Clinical and Genetic Evaluation of a Large Family.","authors":"Gloria T Haskell, Brian C Jensen, Cecile Skrzynia, Thelsa Pulikkotil, Christian R Tilley, Yurong Lu, Daniel S Marchuk, Leigh Ann Samsa, Kirk C Wilhelmsen, Ethan Lange, Cam Patterson, James P Evans, Jonathan S Berg","doi":"","DOIUrl":null,"url":null,"abstract":"<p><strong>Background: </strong>A genetic component to familial mitral valve prolapse (MVP) has been proposed for decades. Despite this, very few genes have been linked to MVP. Herein is described a four-generation pedigree with numerous individuals affected with severe MVP, some at strikingly young ages.</p><p><strong>Methods: </strong>A detailed clinical evaluation performed on all affected family members demonstrated a spectrum of MVP morphologies and associated phenotypes.</p><p><strong>Results: </strong>Linkage analysis failed to identify strong candidate loci, but revealed significant regions, which were investigated further using whole-exome sequencing of one of the severely affected family members. Whole-exome sequencing identified variants in this individual that fell within linkage analysis peak regions, but none was an obvious pathogenic candidate. Follow up segregation analysis of all exome-identified variants was performed to genotype other affected and unaffected individuals in the family, but no variants emerged as clear pathogenic candidates. Two notable variants of uncertain significance in candidate genes were identified: p.I1013S in PTPRJ at 11p11.2 and FLYWCH1 p.R540Q at 16p13.3. Neither gene has been previously linked to MVP in humans, although PTPRJ mutant mice display defects in endocardial cushions, which give rise to the cardiac valves. PTPRJ and FLYWCH1 expression was detected in adult human mitral valve cells, and in-silico analysis of these variants suggests they may be deleterious. However, neither variant segregated completely with all of the affected individuals in the family, particularly when 'affected' was broadly defined.</p><p><strong>Conclusions: </strong>While a contributory role for PTPRJ and FLYWCH1 in this family cannot be excluded, the study results underscored the difficulties involved in uncovering the genomic contribution to MVP, even in apparently Mendelian families.</p>","PeriodicalId":50184,"journal":{"name":"Journal of Heart Valve Disease","volume":"26 5","pages":"569-580"},"PeriodicalIF":0.0000,"publicationDate":"2017-09-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6676909/pdf/nihms-1032377.pdf","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Heart Valve Disease","FirstCategoryId":"1085","ListUrlMain":"","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"Medicine","Score":null,"Total":0}
引用次数: 0
Abstract
Background: A genetic component to familial mitral valve prolapse (MVP) has been proposed for decades. Despite this, very few genes have been linked to MVP. Herein is described a four-generation pedigree with numerous individuals affected with severe MVP, some at strikingly young ages.
Methods: A detailed clinical evaluation performed on all affected family members demonstrated a spectrum of MVP morphologies and associated phenotypes.
Results: Linkage analysis failed to identify strong candidate loci, but revealed significant regions, which were investigated further using whole-exome sequencing of one of the severely affected family members. Whole-exome sequencing identified variants in this individual that fell within linkage analysis peak regions, but none was an obvious pathogenic candidate. Follow up segregation analysis of all exome-identified variants was performed to genotype other affected and unaffected individuals in the family, but no variants emerged as clear pathogenic candidates. Two notable variants of uncertain significance in candidate genes were identified: p.I1013S in PTPRJ at 11p11.2 and FLYWCH1 p.R540Q at 16p13.3. Neither gene has been previously linked to MVP in humans, although PTPRJ mutant mice display defects in endocardial cushions, which give rise to the cardiac valves. PTPRJ and FLYWCH1 expression was detected in adult human mitral valve cells, and in-silico analysis of these variants suggests they may be deleterious. However, neither variant segregated completely with all of the affected individuals in the family, particularly when 'affected' was broadly defined.
Conclusions: While a contributory role for PTPRJ and FLYWCH1 in this family cannot be excluded, the study results underscored the difficulties involved in uncovering the genomic contribution to MVP, even in apparently Mendelian families.
期刊介绍:
The Journal of Heart Valve Disease (ISSN 0966-8519) is the official journal of The Society for Heart Valve Disease. It is indexed/abstracted by Index Medicus, Medline, Medlar, PubMed, Science Citation Index, Scisearch, Research Alert, Biomedical Products, Current Contents/Clinical Medicine. It is issued bi-monthly in one indexed volume by ICR Publishers Ltd., Crispin House, 12A South Approach, Moor Park, Northwood HA6 2ET, United Kingdom. This paper meets the requirements of ANSI standard Z39.48-1992 (Permanence of Paper).