Abnormal ventricular wall patterning precedes and drives MYBPC3 hypertrophic cardiomyopathy
The study investigates how patient-derived MYBPC3 frameshift mutations cause cardiomyopathy by generating humanized CRISPR-Cas9 mouse models and performing phenotypic and transcriptomic profiling from fetal stages through adulthood. Adult homozygous mutants developed hallmark hypertrophic cardiomyopathy without left ventricular non-compaction, while fetal/neonatal hearts showed enlarged ventricular trabeculae and crypts that progressed postnatally into adult hypertrophy. Transcriptomics revealed stage-specific dysregulation of oxidative metabolism, nonsense-mediated decay, and cell-cycle pathways, with trabecular expansion linked to increased cardiomyocyte proliferation and disrupted compact–trabecular proliferative gradients, alongside defective ventricular wall patterning indicated by Hey2+ lineage invasion and ectopic Prdm16 expression. Postnatal Prdm16 restoration attenuated hypertrophy in MYBPC3-null mice, establishing a causal MYBPC3→Prdm16 decline→pathological remodeling link. The paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.
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- last seen: 2026-05-20T01:45:00.602351+00:00
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