\(\textit {In vitro}\) functional analyses of arrhythmogenic right ventricular cardiomyopathy-associated desmoglein-2-missense variations

  • \(\textit {Background}\): Although numerous sequence variants in desmoglein-2 (DSG2) have been associated with arrhythmogenic right ventricular cardiomyopathy (ARVC), the functional impact of new sequence variations is difficult to estimate. \(\textit {Methodology/Principal Findings}\): To test the functional consequences of DSG2-variants, we established an expression system for the extracellular domain and the full-length DSG2 using the human cell line HT1080. We established new tools to investigate ARVC-associated DSG2 variations and compared wild-type proteins and proteins with one of the five selected variations (DSG2-p.R46Q, -p.D154E, -p.D187G, -p.K294E, -p.V392I) with respect to prodomain cleavage, adhesion properties and cellular localisation. \(\textit {Conclusions/Significance}\): The ARVC-associated DSG2-p.R46Q variation was predicted to be \(\textit {probably damaging}\) by bioinformatics tools and to concern a conserved proprotein convertase cleavage site. In this study an impaired prodomain cleavage and an influence on the DSG2-properties could be demonstrated for the R46Q-variant leading to the classification of the variant as a potential gain-of-function mutant. In contrast, the variants DSG2-p.K294E and -p.V392I, which have an arguable impact on ARVC pathogenesis and are predicted to be \(\it benign\), did not show functional differences to the wild-type protein in our study. Notably, the variants DSG2-p.D154E and -p.D187G, which were predicted to be damaging by bioinformatics tools, had no detectable effects on the DSG2 protein properties in our study.

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Metadaten
Author:Anna Gärtner-RommelORCiDGND, Bärbel KlaukeORCiDGND, Ines StorkGND, Karsten NiehausGND, Gesa NiemannGND, Jan GummertORCiDGND, Hendrik MiltingORCiDGND
URN:urn:nbn:de:hbz:294-72185
DOI:https://doi.org/10.1371/journal.pone.0047097
Parent Title (English):PLoS ONE
Publisher:Public Library of Science
Place of publication:San Francisco
Document Type:Article
Language:English
Date of Publication (online):2020/06/10
Date of first Publication:2012/10/10
Publishing Institution:Ruhr-Universität Bochum, Universitätsbibliothek
Tag:Binding analysis; Cadherins; Cell binding assay; Flow cytometry; HT1080 cells; Membrane proteins; Sequence motif analysis; Small interfering RNAs
Volume:7
Issue:10, Artikel e47097
First Page:e47097-1
Last Page:e47097-12
Institutes/Facilities:Herz- und Diabeteszentrum NRW, Klinik für Thorax- und Kardiovaskularchirurgie
open_access (DINI-Set):open_access
Licence (English):License LogoCreative Commons - CC BY 4.0 - Attribution 4.0 International