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Combination of cell signaling molecules can facilitate MYOD1-mediated myogenic transdifferentiation of pig fibroblasts

摘要Background:Myogenic transdifferentiation can be accomplished through ectopic MYOD1 expression, which is facilitated by various signaling pathways associated with myogenesis. In this study, we attempted to transdifferentiate pig embryonic fibroblasts (PEFs) myogenically into skeletal muscle through overexpression of the pig MYOD1 gene and modulation of the FGF, TGF-β, WNT, and cAMP signaling pathways. Results:The MYOD1 overexpression vector was constructed based on comparative sequence analysis, demonstrating that pig MYOD1 has evolutionarily conserved domains across various species. Although forced MYOD1 expression through these vectors triggered the expression of endogenous muscle markers, transdifferentiated muscle cells from fibroblasts were not observed. Therefore, various signaling molecules, including FGF2, SB431542, CHIR99021, and forskolin, along with MYOD1 overexpression were applied to enhance the myogenic reprogramming. The modified conditions led to the derivation of myotubes and activation of muscle markers in PEFs, as determined by qPCR and immunostaining. Notably, a sarcomere-like structure was observed, indicating that terminally differentiated skeletal muscle could be obtained from transdifferentiated cells. Conclusions:In summary, we established a protocol for reprogramming MYOD1-overexpressing PEFs into the mature skeletal muscle using signaling molecules. Our myogenic reprogramming can be used as a cell source for muscle disease models in regenerative medicine and the production of cultured meat in cellular agriculture.

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作者 Jinsol Jeong [1] Kwang-Hwan Choi [2] Seung-Hun Kim [1] Dong-Kyung Lee [2] Jong-Nam Oh [1] Mingyun Lee [1] Gyung Cheol Choe [1] Chang-Kyu Lee [3] 学术成果认领
作者单位 Department of Agricultural Biotechnology,Animal Biotechnology Major,and Research Institute of Agriculture and Life Science,Seoul National University,Seoul 08826,South Korea [1] Department of Agricultural Biotechnology,Animal Biotechnology Major,and Research Institute of Agriculture and Life Science,Seoul National University,Seoul 08826,South Korea; Research and Development Center,Space F corporation,Hwasung-si,Gyeonggi-do 18471,South Korea [2] Department of Agricultural Biotechnology,Animal Biotechnology Major,and Research Institute of Agriculture and Life Science,Seoul National University,Seoul 08826,South Korea;Institute of Green Bio Science and Technology,Seoul National University,Pyeong Chang,Kangwon-do 25354,South Korea [3]
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发布时间 2021-12-08(万方平台首次上网日期,不代表论文的发表时间)
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畜牧与生物技术杂志(英文版)

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