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Hox genes are involved in vascular wall-resident multipotent stem cell differentiation into smooth muscle cells

机译:Hox基因参与血管壁驻留多能干细胞向平滑肌细胞的分化

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Human vascular wall-resident CD44+ multipotent stem cells (VW-MPSCs) within the vascular adventitia are capable to differentiate into pericytes and smooth muscle cells (SMC). This study demonstrates HOX-dependent differentiation of CD44(+) VW-MPSCs into SMC that involves epigenetic modification of transgelin as a down-stream regulated gene. First, HOXB7, HOXC6 and HOXC8 were identified to be differentially expressed in VW-MPSCs as compared to terminal differentiated human aortic SMC, endothelial cells and undifferentiated pluripotent embryonic stem cells. Silencing these HOX genes in VW-MPSCs significantly reduced their sprouting capacity and increased expression of the SMC markers transgelin and calponin and the histone gene histone H1. Furthermore, the methylation pattern of the TAGLN promoter was altered. In summary, our findings suggest a role for certain HOX genes in regulating differentiation of human VW-MPSC into SMCs that involves epigenetic mechanisms. This is critical for understanding VW-MPSC–dependent vascular disease processes such as neointima formation and tumor vascularization.
机译:血管外膜内的人类血管壁驻留CD44 +多能干细胞(VW-MPSC)能够分化为周细胞和平滑肌细胞(SMC)。这项研究表明,CD44(+)VW-MPSCs向SMC的HOX依赖性分化涉及SMC的表观遗传修饰,作为下游调控基因。首先,与末端分化的人主动脉SMC,内皮细胞和未分化的多能胚胎干细胞相比,HOXB7,HOXC6和HOXC8被确定在VW-MPSCs中差异表达。将这些HOX基因沉默在VW-MPSC中,会显着降低其发芽能力,并增加SMC标记转胶蛋白和钙蛋白和组蛋白基因组蛋白H1的表达。此外,改变了TAGLN启动子的甲基化模式。总之,我们的发现表明某些HOX基因在调节人VW-MPSC分化为涉及表观遗传机制的SMC中的作用。这对于了解依赖VW-MPSC的血管疾病过程(例如新内膜形成和肿瘤血管形成)至关重要。

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