Auxilin is a novel susceptibility gene for congenital heart block which directly impacts fetal heart function

Author:

Meisgen Sabrina,Hedlund Malin,Ambrosi Aurelie,Folkersen Lasse,Ottosson Vijole,Forsberg David,Thorlacius Gudny Ella,Biavati Luca,Strandberg Linn,Mofors Johannes,Ramskold Daniel,Ruhrmann Sabrina,Meneghel Lauro,Nyberg William,Espinosa Alexander,Hamilton Robert Murray,Franco-Cereceda Anders,Hamsten Anders,Olsson Tomas,Greene Lois,Eriksson Per,Gemzell-Danielsson Kristina,Salomonsson Stina,Kuchroo Vijay K,Herlenius Eric,Kockum Ingrid,Sonesson Sven-Erik,Wahren-Herlenius MarieORCID

Abstract

ObjectiveNeonatal lupus erythematosus (NLE) may develop after transplacental transfer of maternal autoantibodies with cardiac manifestations (congenital heart block, CHB) including atrioventricular block, atrial and ventricular arrhythmias, and cardiomyopathies. The association with anti-Ro/SSA antibodies is well established, but a recurrence rate of only 12%–16% despite persisting maternal autoantibodies suggests that additional factors are required for CHB development. Here, we identify fetal genetic variants conferring risk of CHB and elucidate their effects on cardiac function.MethodsA genome-wide association study was performed in families with at least one case of CHB. Gene expression was analysed by microarrays, RNA sequencing and PCR and protein expression by western blot, immunohistochemistry, immunofluorescence and flow cytometry. Calcium regulation and connectivity were analysed in primary cardiomyocytes and cells induced from pleuripotent stem cells. Fetal heart performance was analysed by Doppler/echocardiography.ResultsWe identified DNAJC6 as a novel fetal susceptibility gene, with decreased cardiac expression of DNAJC6 associated with the disease risk genotype. We further demonstrate that fetal cardiomyocytes deficient in auxilin, the protein encoded by DNAJC6, have abnormal connectivity and Ca2+ homoeostasis in culture, as well as decreased cell surface expression of the Cav1.3 calcium channel. Doppler echocardiography of auxilin-deficient fetal mice revealed cardiac NLE abnormalities in utero, including abnormal heart rhythm with atrial and ventricular ectopias, as well as a prolonged atrioventricular time intervals.ConclusionsOur study identifies auxilin as the first genetic susceptibility factor in NLE modulating cardiac function, opening new avenues for the development of screening and therapeutic strategies in CHB.

Funder

the Swedish Heart-Lung Foundation

the Swedish Research Council

Torsten and Ragnar Söderberg Foundation

the Stockholm County Council

the Karolinska Institute

the Swedish Rheumatism Association

Freemason Children Foundation

King Gustaf the V:th 80-year Foundation

Publisher

BMJ

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology,Immunology and Allergy,Rheumatology

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