4.8 Article

Cronos Titin Is Expressed in Human Cardiomyocytes and Necessary for Normal Sarcomere Function

期刊

CIRCULATION
卷 140, 期 20, 页码 1647-1660

出版社

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1161/CIRCULATIONAHA.119.039521

关键词

cardiomyopathy; induced pluripotent stem cells; myocytes; cardiac; sarcomere assembly

资金

  1. National Institutes of Health [R24HD000836, T32 EB1650, F32 HL126332, T32 HL007312 HD048895, R01 HL128362, P01 HL094374, R01 HL084642, U54 DK107979, P01 GM081619]
  2. National Science Foundation [CBET-1509106]
  3. German Research Foundation [SFB1002/TPA08]
  4. Foundation Leducq Transatlantic Network of Excellence Award

向作者/读者索取更多资源

Background: The giant sarcomere protein titin is important in both heart health and disease. Mutations in the gene encoding for titin (TTN) are the leading known cause of familial dilated cardiomyopathy. The uneven distribution of these mutations within TTN motivated us to seek a more complete understanding of this gene and the isoforms it encodes in cardiomyocyte (CM) sarcomere formation and function. Methods: To investigate the function of titin in human CMs, we used CRISPR/Cas9 to generate homozygous truncations in the Z disk (TTN-Z(-/-)) and A-band (TTN-A(-/-)) regions of the TTN gene in human induced pluripotent stem cells. The resulting CMs were characterized with immunostaining, engineered heart tissue mechanical measurements, and single-cell force and calcium measurements. Results: After differentiation, we were surprised to find that despite the more upstream mutation, TTN-Z(-/-)-CMs had sarcomeres and visibly contracted, whereas TTN-A(-/-)-CMs did not. We hypothesized that sarcomere formation was caused by the expression of a recently discovered isoform of titin, Cronos, which initiates downstream of the truncation in TTN-Z(-/-)-CMs. Using a custom Cronos antibody, we demonstrate that this isoform is expressed and integrated into myofibrils in human CMs. TTN-Z(-/-)-CMs exclusively express Cronos titin, but these cells produce lower contractile force and have perturbed myofibril bundling compared with controls expressing both full-length and Cronos titin. Cronos titin is highly expressed in human fetal cardiac tissue, and when knocked out in human induced pluripotent stem cell derived CMs, these cells exhibit reduced contractile force and myofibrillar disarray despite the presence of full-length titin. Conclusions: We demonstrate that Cronos titin is expressed in developing human CMs and is able to support partial sarcomere formation in the absence of full-length titin. Furthermore, Cronos titin is necessary for proper sarcomere function in human induced pluripotent stem cell derived CMs. Additional investigation is necessary to understand the molecular mechanisms of this novel isoform and how it contributes to human cardiac disease.

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