carlo napolitano

Associate Professor

University of Pavia
Country flag
Italy

Research Interests

Explore related searches

Contact this professor

LinkedIn
ORCID
Google Scholar

About

Carlo Napolitano is an Associate Professor at the University of Pavia in Italy. His research primarily focuses on the genetics of cardiomyopathies and arrhythmias, with recent publications addressing genotype-specific outcomes in desmosomal cardiomyopathies, risk factors in Brugada syndrome, and genetic testing for cardiac diseases. He has contributed extensively to understanding the genetic mechanisms underlying arrhythmic phenotypes and the susceptibility to cardiac conditions.

Articles (14)

RyR2 C-terminal truncating variants identified in patients with arrhythmic phenotypes exert a dominant negative effect through formation of wildtype-truncation heteromers

Gain-of-function missense variants in the cardiac ryanodine receptor (RyR2) are linked to catecholaminergic polymorphic ventricular tachycardia (CPVT), whereas RyR2 loss-of-function missense variants cause Ca2+ release deficiency syndrome (CRDS). Recently, truncating variants in RyR2 have also been associated with ventricular arrhythmias (VAs) and sudden cardiac death. However, there are limited insights into the potential clinical relevance and in vitro functional impact of RyR2 truncating variants. We performed genetic screening of patients presenting with syncope, VAs, or unexplained sudden death and in vitro characterization of the expression and function of RyR2 truncating variants in HEK293 cells. We identified two previously unknown RyR2 truncating variants (Y4591Ter and R4663Ter) and one splice site variant predicted to result in a frameshift and premature termination (N4717 + 15Ter). These 3 new RyR2 truncating variants and a recently reported RyR2 truncating variant, R4790Ter, were generated and functionally characterized in vitro. Immunoprecipitation and immunoblotting analyses showed that all 4 RyR2 truncating variants formed heteromers with the RyR2-wildtype (WT) protein. Each of these C-terminal RyR2 truncations was non-functional and suppressed [3H]ryanodine binding to RyR2-WT and RyR2-WT mediated store overload induced spontaneous Ca2+ release activity in HEK293 cells. The expression of these RyR2 truncating variants in HEK293 cells was markedly reduced compared with that of the full-length RyR2 WT protein. Our data indicate that C-terminal RyR2 truncating variants are non-functional and can exert a dominant negative impact on the function of the RyR2 WT protein through formation of heteromeric WT/truncation complex.

Year:

2023

Collaborators (6)

Jean Baptiste Gourraud

Professor

-

FRANCE

S.R. Wayne Chen

University of Calgary

CANADA

Alan Pittman

University College London

UNITED KINGDOM

Andrea Mazzanti

Assistant Professor

University of Pavia

ITALY

Pete Jones

University of Otago

NEW ZEALAND

Alban-Elouen Baruteau

Université de Nantes

FRANCE
Social connections

How do I reach out?

Sign in for free to see their profile details and contact information.

Meet Kite AI