Both genetic and environmental factors contribute to the development of dilated cardiomyopathy. Among the genes involved, TTN mutations, including truncated variants, explain 25% of DCM cases. We performed genetic counseling and analysis on a 57-year-old woman diagnosed with severe DCM and presenting relevant acquired risk factors for DCM (hypertension, diabetes, smoking habit, and/or previous alcohol and cocaine abuse) and with a family history of both DCM and sudden cardiac death. The left ventricular systolic function, as assessed by standard echocardiography, was 20%. The genetic analysis performed using TruSight Cardio panel, including 174 genes related to cardiac genetic diseases, revealed a novel nonsense TTN variant (TTN:c.103591A > T, p.Lys34531*), falling within the M-band region of the titin protein. This region is known for its important role in maintaining the structure of the sarcomere and in promoting sarcomerogenesis. The identified variant was classified as likely pathogenic based on ACMG criteria. The current results support the need of genetic analysis in the presence of a family history, even when relevant acquired risk factors for DCM may have contributed to the severity of the disease.

A Novel Nonsense Pathogenic TTN Variant Identified in a Patient with Severe Dilated Cardiomyopathy / Micolonghi, Caterina; Fabiani, Marco; Pagannone, Erika; Savio, Camilla; Ricci, Marta; Caroselli, Silvia; Gambioli, Vittoria; Musumeci, Maria Beatrice; Germani, Aldo; TINI MELATO, Giacomo; Autore, Camillo; Pizzuti, Antonio; Visco, Vincenzo; Rubattu, Speranza Donatella; Petrucci, Simona; Piane, Maria. - In: CURRENT ISSUES IN MOLECULAR BIOLOGY. - ISSN 1467-3045. - 45:3(2023), pp. 2422-2430. [10.3390/cimb45030157]

A Novel Nonsense Pathogenic TTN Variant Identified in a Patient with Severe Dilated Cardiomyopathy

Caterina Micolonghi
Co-primo
Conceptualization
;
Marco Fabiani
Co-primo
;
Erika Pagannone;Silvia Caroselli;Vittoria Gambioli;Beatrice Musumeci;Aldo Germani;Giacomo Tini Melato;Camillo Autore;Antonio Pizzuti;vincenzo visco;Speranza Rubattu;Simona Petrucci;Maria PIANE
2023

Abstract

Both genetic and environmental factors contribute to the development of dilated cardiomyopathy. Among the genes involved, TTN mutations, including truncated variants, explain 25% of DCM cases. We performed genetic counseling and analysis on a 57-year-old woman diagnosed with severe DCM and presenting relevant acquired risk factors for DCM (hypertension, diabetes, smoking habit, and/or previous alcohol and cocaine abuse) and with a family history of both DCM and sudden cardiac death. The left ventricular systolic function, as assessed by standard echocardiography, was 20%. The genetic analysis performed using TruSight Cardio panel, including 174 genes related to cardiac genetic diseases, revealed a novel nonsense TTN variant (TTN:c.103591A > T, p.Lys34531*), falling within the M-band region of the titin protein. This region is known for its important role in maintaining the structure of the sarcomere and in promoting sarcomerogenesis. The identified variant was classified as likely pathogenic based on ACMG criteria. The current results support the need of genetic analysis in the presence of a family history, even when relevant acquired risk factors for DCM may have contributed to the severity of the disease.
2023
dilated cardiomyopathy; genetic; ttn; nonsense pathogenic variant; m-band region; sudden cardiac death
01 Pubblicazione su rivista::01i Case report
A Novel Nonsense Pathogenic TTN Variant Identified in a Patient with Severe Dilated Cardiomyopathy / Micolonghi, Caterina; Fabiani, Marco; Pagannone, Erika; Savio, Camilla; Ricci, Marta; Caroselli, Silvia; Gambioli, Vittoria; Musumeci, Maria Beatrice; Germani, Aldo; TINI MELATO, Giacomo; Autore, Camillo; Pizzuti, Antonio; Visco, Vincenzo; Rubattu, Speranza Donatella; Petrucci, Simona; Piane, Maria. - In: CURRENT ISSUES IN MOLECULAR BIOLOGY. - ISSN 1467-3045. - 45:3(2023), pp. 2422-2430. [10.3390/cimb45030157]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1675554
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