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SOX15和SOX7对P19细胞中的成肌程序具有不同的调控作用。

SOX15 and SOX7 differentially regulate the myogenic program in P19 cells.

作者信息

Savage Josée, Conley Andrew J, Blais Alexandre, Skerjanc Ilona S

机构信息

Department of Biochemistry, Microbiology, and Immunology, University of Ottawa, Ottawa, Ontario, Canada.

出版信息

Stem Cells. 2009 Jun;27(6):1231-43. doi: 10.1002/stem.57.

Abstract

In this study, we have identified novel roles for Sox15 and Sox7 as regulators of muscle precursor cell fate in P19 cells. To examine the role of Sox15 and Sox7 during skeletal myogenesis, we isolated populations of P19 cells with either gene stably integrated into the genome, termed P19[Sox15] and P19[Sox7]. Both SOX proteins were sufficient to upregulate the expression of the muscle precursor markers Pax3/7, Meox1, and Foxc1 in aggregated cells. In contrast to the P19[Sox7] cell lines, which subsequently differentiated into skeletal muscle, myogenesis failed to progress past the precursor stage in P19[Sox15] cell lines, shown by the lack of MyoD and myosin heavy chain (MHC) expression. P19[Sox15] clones showed elevated and sustained levels of the inhibitory factors Msx1 and Id1, which may account for the lack of myogenic progression in these cells. Stable expression of a Sox15 dominant-negative protein resulted in the loss of Pax3/7 and Meox1 transcripts, as well as myogenic regulatory factor (MRF) and MHC expression. These results suggest that Sox15, or genes that are bound by Sox15, are necessary and sufficient for the acquisition of the muscle precursor cell fate. On the other hand, knockdown of endogenous Sox15 caused a decrease in Pax3 and Meox1, but not MRF expression, suggesting that other factors can compensate in the absence of Sox15. Taken together, these results show that both Sox7 and Sox15 are able to induce the early stages of myogenesis, but only Sox7 is sufficient to initiate the formation of fully differentiated skeletal myocytes.

摘要

在本研究中,我们确定了Sox15和Sox7作为P19细胞中肌肉前体细胞命运调节因子的新作用。为了研究Sox15和Sox7在骨骼肌生成过程中的作用,我们分离了基因稳定整合到基因组中的P19细胞群体,称为P19[Sox15]和P19[Sox7]。两种SOX蛋白都足以上调聚集细胞中肌肉前体标志物Pax3/7、Meox1和Foxc1的表达。与随后分化为骨骼肌的P19[Sox7]细胞系不同,P19[Sox15]细胞系中的肌生成未能超过前体阶段,这表现为缺乏MyoD和肌球蛋白重链(MHC)表达。P19[Sox15]克隆显示抑制因子Msx1和Id1的水平升高且持续,这可能解释了这些细胞中肌生成进展的缺乏。Sox15显性负性蛋白的稳定表达导致Pax3/7和Meox1转录本以及肌生成调节因子(MRF)和MHC表达的丧失。这些结果表明,Sox15或与Sox15结合的基因对于获得肌肉前体细胞命运是必要且充分的。另一方面,内源性Sox15的敲低导致Pax3和Meox1减少,但不影响MRF表达,这表明在没有Sox15的情况下其他因素可以进行补偿。综上所述,这些结果表明Sox7和Sox15都能够诱导肌生成的早期阶段,但只有Sox7足以启动完全分化的骨骼肌细胞的形成。

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