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  Asparagine Synthetase Marks a Distinct Dependency Threshold for Cardiomyocyte Dedifferentiation

Zhu, Y., Ackers-Johnson, M., Shanmugam, M. K., Pakkiri, L. S., Drum, C. L., Chen, Y., et al. (2024). Asparagine Synthetase Marks a Distinct Dependency Threshold for Cardiomyocyte Dedifferentiation. CIRCULATION, 149(23), 1833-1851. doi:10.1161/CIRCULATIONAHA.123.063965.

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 Creators:
Zhu, Yike, Author
Ackers-Johnson, Matthew, Author
Shanmugam, Muthu K., Author
Pakkiri, Leroy Sivappiragasam, Author
Drum, Chester Lee, Author
Chen, Yanpu1, Author           
Kim, Johnny1, Author           
Paltzer, Wyatt G., Author
Mahmoud, Ahmed I., Author
Tan, Wilson Lek Wen, Author
Lee, Mick Chang Jie, Author
Jiang, Jianming, Author
Luu, Danh Anh Tuan, Author
Ng, Shi Ling, Author
Li, Peter Yi Qing, Author
Wang, Anhui, Author
Qi, Rong, Author
Ong, Gabriel Jing Xiang, Author
Ng, Timothy Yu, Author
Haigh, Jody J., Author
Tiang, Zenia, AuthorRichards, A. Mark, AuthorFoo, Roger S. Y., Author more..
Affiliations:
1Cardiac Development and Remodeling, Max Planck Institute for Heart and Lung Research, Max Planck Society, ou_2591695              

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 Abstract: BACKGROUND:Adult mammalian cardiomyocytes have limited proliferative capacity, but in specifically induced contexts they traverse through cell-cycle reentry, offering the potential for heart regeneration. Endogenous cardiomyocyte proliferation is preceded by cardiomyocyte dedifferentiation (CMDD), wherein adult cardiomyocytes revert to a less matured state that is distinct from the classical myocardial fetal stress gene response associated with heart failure. However, very little is known about CMDD as a defined cardiomyocyte cell state in transition.METHODS:Here, we leveraged 2 models of in vitro cultured adult mouse cardiomyocytes and in vivo adeno-associated virus serotype 9 cardiomyocyte-targeted delivery of reprogramming factors (Oct4, Sox2, Klf4, and Myc) in adult mice to study CMDD. We profiled their transcriptomes using RNA sequencing, in combination with multiple published data sets, with the aim of identifying a common denominator for tracking CMDD.RESULTS:RNA sequencing and integrated analysis identified Asparagine Synthetase (Asns) as a unique molecular marker gene well correlated with CMDD, required for increased asparagine and also for distinct fluxes in other amino acids. Although Asns overexpression in Oct4, Sox2, Klf4, and Myc cardiomyocytes augmented hallmarks of CMDD, Asns deficiency led to defective regeneration in the neonatal mouse myocardial infarction model, increased cell death of cultured adult cardiomyocytes, and reduced cell cycle in Oct4, Sox2, Klf4, and Myc cardiomyocytes, at least in part through disrupting the mammalian target of rapamycin complex 1 pathway.CONCLUSIONS:We discovered a novel gene Asns as both a molecular marker and an essential mediator, marking a distinct threshold that appears in common for at least 4 models of CMDD, and revealing an Asns/mammalian target of rapamycin complex 1 axis dependency for dedifferentiating cardiomyocytes. Further study will be needed to extrapolate and assess its relevance to other cell state transitions as well as in heart regeneration.

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 Dates: 2024-04-082024-06-04
 Publication Status: Issued
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Title: CIRCULATION
Source Genre: Journal
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Pages: - Volume / Issue: 149 (23) Sequence Number: - Start / End Page: 1833 - 1851 Identifier: ISSN: 0009-7322