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. 2026 Sep 17;31(18):3294. doi: 10.3390/molecules31183294

Correction: Chen et al. RNA Chemical Modifications in Mammalian Skeletal Muscle Development, Homeostasis, and Disease: Regulatory Mechanisms and Chemical Biology Perspectives. Molecules 2026, 31, 2797

Dujun Chen 1,2,3,†, Mailin Gan 1,2,3,†, Yuhang Lei 1,2,3, Xinyi Wang 1,2,3, Jincheng Zan 1,2,3, Qing Ye 1,2,3, Xiaofeng Zhou 1,2,3, Lei Chen 1,2,3, Yan Wang 1,2,3, Ye Zhao 1,2,3, Li Zhu 1,2,3,*, Linyuan Shen 1,2,3,*
PMCID: PMC13610095  PMID: 42796645

Text Correction

There was an error in the original publication [1]. The last sentence of the third paragraph in Section 2.1. “ADAR proteins mediate the fate transformation of muscle-derived cells by regulating the structural stability of specific lncRNAs [30]” is incorrect and has been removed.

The following sentence is correct and has been added to the end of the first paragraph in Section 2.1.

The HNRNPA2B1 protein mediates the fate transition of myogenic cells by regulating specific intrinsic and downstream splicing regulators [30].

The authors state that the scientific conclusions are unaffected. This correction was approved by the Academic Editor. The original publication has also been updated.

Footnotes

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Reference

  • 1.Chen D., Gan M., Lei Y., Wang X., Zan J., Ye Q., Zhou X., Chen L., Wang Y., Zhao Y., et al. RNA Chemical Modifications in Mammalian Skeletal Muscle Development, Homeostasis, and Disease: Regulatory Mechanisms and Chemical Biology Perspectives. Molecules. 2026;31:2797. doi: 10.3390/molecules31162797. [DOI] [PMC free article] [PubMed] [Google Scholar]

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