ACTN2 Mutant Causes Proteopathy in Human iPSC-Derived Cardiomyocytes.
Antonia T L ZechMaksymilian ProndzynskiSonia R SinghNiels PietschEllen OrtheyErda AlizotiJosefine BuschAlexandra MadsenCharlotta S BehrensMoritz Meyer-JensGiulia MeariniMarc D LemoineElisabeth KrämerDiogo MosqueiraSanamjeet VirdiDaniela IndenbirkenMaren DepkeManuela Gesell SalazarLinus VölkerIngke BrarenWilliam T PuThomas EschenhagenElke HammerSaskia SchlossarekLucie CarrierPublished in: Cells (2022)
Genetic variants in α-actinin-2 (ACTN2) are associated with several forms of (cardio)myopathy. We previously reported a heterozygous missense (c.740C>T) ACTN2 gene variant, associated with hypertrophic cardiomyopathy, and characterized by an electro-mechanical phenotype in human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs). Here, we created with CRISPR/Cas9 genetic tools two heterozygous functional knock-out hiPSC lines with a second wild-type (ACTN2wt) and missense ACTN2 (ACTN2mut) allele, respectively. We evaluated their impact on cardiomyocyte structure and function, using a combination of different technologies, including immunofluorescence and live cell imaging, RNA-seq, and mass spectrometry. This study showed that ACTN2mut presents a higher percentage of multinucleation, protein aggregation, hypertrophy, myofibrillar disarray, and activation of both the ubiquitin-proteasome system and the autophagy-lysosomal pathway as compared to ACTN2wt in 2D-cultured hiPSC-CMs. Furthermore, the expression of ACTN2mut was associated with a marked reduction of sarcomere-associated protein levels in 2D-cultured hiPSC-CMs and force impairment in engineered heart tissues. In conclusion, our study highlights the activation of proteolytic systems in ACTN2mut hiPSC-CMs likely to cope with ACTN2 aggregation and therefore directs towards proteopathy as an additional cellular pathology caused by this ACTN2 variant, which may contribute to human ACTN2 -associated cardiomyopathies.
Keyphrases
- endothelial cells
- rna seq
- high glucose
- mass spectrometry
- hypertrophic cardiomyopathy
- crispr cas
- induced pluripotent stem cells
- wild type
- gene expression
- left ventricular
- cell death
- poor prognosis
- genome wide
- oxidative stress
- small molecule
- binding protein
- transcription factor
- single molecule
- atrial fibrillation
- drug induced
- late onset
- autism spectrum disorder
- high performance liquid chromatography
- simultaneous determination