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Clinical Considerations for a Family with Dilated Cardiomyopathy,Sudden Cardiac Death,and a Novel TTN Frameshift Mutation
Authors:Emanuele Micaglio  Michelle M Monasky  Andrea Bernardini  Valerio Mecarocci  Valeria Borrelli  Giuseppe Ciconte  Emanuela T Locati  Marco Piccoli  Andrea Ghiroldi  Luigi Anastasia  Carlo Pappone
Affiliation:1.Department of Arrhythmology, IRCCS Policlinico San Donato, Piazza Edmondo Malan 1, San Donato Milanese, 20097 Milan, Italy; (E.M.); (M.M.M.); (A.B.); (V.M.); (V.B.); (G.C.); (E.T.L.);2.Laboratory of Stem Cells for Tissue Engineering, IRCCS Policlinico San Donato, San Donato Milanese, 20097 Milan, Italy; (M.P.); (A.G.); (L.A.);3.Vita-Salute San Raffaele University, 20132 Milan, Italy
Abstract:Dilated cardiomyopathy (DCM) is the leading indication for heart transplantation. TTN gene truncating mutations account for about 25% of familial DCM cases and for 18% of sporadic DCM cases. The clinical relevance of specific variants in TTN has been difficult to determine because of the sheer size of the protein for which TTN encodes, as well as existing extensive genetic variation. Clinicians should communicate novel clinically-relevant variants and genotype–phenotype associations, so that animal studies evaluating the molecular mechanisms are always conducted with a focus on clinical significance. In the present study, we report for the first time the novel truncating heterozygous variant NM_001256850.1:c.72777_72783del (p.Phe24259Leufs*51) in the TTN gene and its association with DCM in a family with sudden death. This variant occurs in the A-band region of the sarcomere, in a known mutational hotspot of the gene. Truncating titin variants that occur in this region are the most common cause of DCM and have been rarely reported in asymptomatic individuals, differently from other pathogenic TTN gene variants. Further studies are warranted to better understand this particular clinically-relevant variant.
Keywords:dilated cardiomyopathy  TTN  titin  sudden cardiac death  genetic testing  mutation  humans  family  deletion  truncating
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