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  1. Heterozygous loss of Rbm24 in the adult mouse heart increases sarcomere slack length but does not affect function
  2. Alternative splicing in cardiomyopathy
  3. The clinical outcome of LMNA missense mutations can be associated with the amount of mutated protein in the nuclear envelope
  4. RBM20 Mutations Induce an Arrhythmogenic Dilated Cardiomyopathy Related to Disturbed Calcium Handling
  5. The MEF2 transcriptional target DMPK induces loss of sarcomere structure and cardiomyopathy
  6. Cardiac circRNAs arise mainly from constitutive exons rather than alternatively spliced exons
  7. Z-disc protein CHAPb induces cardiomyopathy and contractile dysfunction in the postnatal heart
  8. The RNA-binding protein Rbm38 is dispensable during pressure overload-induced cardiac remodeling in mice
  9. TECRL , a new life‐threatening inherited arrhythmia gene associated with overlapping clinical features of both LQTS and CPVT
  10. RBM20 Regulates Circular RNA Production From the Titin Gene
  11. A mutation in the glutamate-rich region of RNA-binding motif protein 20 causes dilated cardiomyopathy through missplicing of titin and impaired Frank–Starling mechanism
  12. A targeted metabolomics assay for cardiac metabolism and demonstration using a mouse model of dilated cardiomyopathy
  13. Long Non-Coding RNA Malat-1 Is Dispensable during Pressure Overload-Induced Cardiac Remodeling and Failure in Mice
  14. Insights into alternative splicing of sarcomeric genes in the heart
  15. The LMNA mutation p.Arg321Ter associated with dilated cardiomyopathy leads to reduced expression and a skewed ratio of lamin A and lamin C proteins
  16. Sarcosin (Krp1) in skeletal muscle differentiation: gene expression profiling and knockdown experiments
  17. Cytoskeletal heart-enriched actin-associated protein (CHAP) is expressed in striated and smooth muscle cells in chick and mouse during embryonic and adult stages
  18. CHAP is a newly identified Z-disc protein essential for heart and skeletal muscle function
  19. CAZIP, a novel protein expressed in the developing heart and nervous system
  20. Human stem cells as a model for cardiac differentiation and disease
  21. Genome-Wide Transcriptional Profiling of Human Embryonic Stem Cells Differentiating to Cardiomyocytes