Protein‐extending ACTN2 frameshift variants cause variable myopathy phenotypes by protein aggregation

Author:

Ranta‐aho Johanna12ORCID,Felice Kevin J.3,Jonson Per Harald12ORCID,Sarparanta Jaakko12,Yvorel Cédric4,Harzallah Ines5,Touraine Renaud5,Pais Lynn67,Austin‐Tse Christina A.68,Ganesh Vijay S.69,O'Leary Melanie C.6,Rehm Heidi L.68,Hehir Michael K.10,Subramony Sub11ORCID,Wu Qian12,Udd Bjarne113,Savarese Marco12ORCID

Affiliation:

1. Folkhälsan Research Center Haartmaninkatu 8 00290 Helsinki Finland

2. Department of Medical Genetics, Medicum University of Helsinki Haartmaninkatu 8 Helsinki 00290 Finland

3. Department of Neuromuscular Medicine Hospital for Special Care 2150 Corbin Avenue New Britain Connecticut 06053 USA

4. Cardiology Department Hôpital Nord Hôpital Nord, CHU de Saint Etienne Avenue Albert Raimond Saint Priest‐en‐Jarez 42270 France

5. Genetic Department Hôpital Nord, CHU de Saint Etienne Avenue Albert Raimond Saint Priest‐en‐Jarez 42270 France

6. Program in Medical and Population Genetics Broad Institute of MIT and Harvard 105 Broadway Cambridge Massachusetts 02142 USA

7. Division of Genetics and Genomics, Boston Children's Hospital Harvard Medical School 2 Brookline Place Boston Massachusetts 02445 USA

8. Center for Genomic Medicine Massachusetts General Hospital Harvard Medical School 55 Fruit Street Boston Massachusetts 02114 USA

9. Department of Neurology Brigham and Women's Hospital 60 Fenwood Road Boston Massachusetts 02115 USA

10. Department of Neurology Larner College of Medicine at the University of Vermont 149 Beaumont Avenue Burlington Vermont 05405 USA

11. Department of Neurology University of Florida College of Medicine 1505 SW Archer Road Gainesville Florida 32610 USA

12. Department of Pathology University of Connecticut School of Medicine 263 Farmington Avenue Farmington Connecticut 06030 USA

13. Tampere Neuromuscular Center Tampere University and Tampere University Hospital Biokatu 8 Tampere 33520 Finland

Abstract

AbstractObjectiveThe objective of the study is to characterize the pathomechanisms underlying actininopathies.Distal myopathies are a group of rare, inherited muscular disorders characterized by progressive loss of muscle fibers that begin in the distal parts of arms and legs. Recently, variants in a new disease gene, ACTN2, have been shown to cause distal myopathy. ACTN2, a gene previously only associated with cardiomyopathies, encodes alpha‐actinin‐2, a protein expressed in both cardiac and skeletal sarcomeres. The primary function of alpha‐actinin‐2 is to link actin and titin to the sarcomere Z‐disk. New ACTN2 variants are continuously discovered; however, the clinical significance of many variants remains unknown. Thus, lack of clear genotype–phenotype correlations in ACTN2‐related diseases, actininopathies, persists.MethodsFunctional characterization in C2C12 cell model of several ACTN2 variants is conducted, including frameshift and missense variants associated with dominant and recessive actininopathies. We assess the genotype–phenotype correlations of actininopathies using clinical data from several patients carrying these variants.ResultsThe results show that the missense variants associated with a recessive form of actininopathy do not cause detectable alpha‐actinin‐2 aggregates in the cell model. Conversely, dominant frameshift variants causing a protein extension do form alpha‐actinin‐2 aggregates.InterpretationThe results suggest that alpha‐actinin‐2 aggregation is the disease mechanism underlying some dominant actininopathies, and thus, we recommend that protein‐extending frameshift variants in ACTN2 should be classified as pathogenic. However, this mechanism is likely elicited by only a limited number of variants. Alternative functional characterization methods should be explored to further investigate other molecular mechanisms underlying actininopathies.

Funder

Academy of Finland

National Eye Institute

National Heart, Lung, and Blood Institute

Chan Zuckerberg Initiative

National Human Genome Research Institute

Emil Aaltosen Säätiö

Folkhälsanin Tutkimussäätiö

Jane ja Aatos Erkon Säätiö

Sigrid Juséliuksen Säätiö

Finska Läkaresällskapet

Silicon Valley Community Foundation

Publisher

Wiley

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Current advance on distal myopathy genetics;Current Opinion in Neurology;2024-07-16

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