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OCT4 沉默会触发其表观遗传抑制作用,并损害间充质基质细胞的成骨和成脂分化。

OCT4 Silencing Triggers Its Epigenetic Repression and Impairs the Osteogenic and Adipogenic Differentiation of Mesenchymal Stromal Cells.

机构信息

Laboratorio de Regulación Génica y Células Madre, Instituto de Medicina Traslacional, Trasplante y Bioingeniería (IMeTTyB), Universidad Favaloro-CONICET, Solís 453, Buenos Aires 1078, Argentina.

出版信息

Int J Mol Sci. 2019 Jul 3;20(13):3268. doi: 10.3390/ijms20133268.

Abstract

Mechanisms mediating mesenchymal stromal/stem cells' (MSCs) multipotency are unclear. Although the expression of the pluripotency factor OCT4 has been detected in MSCs, whether it has a functional role in adult stem cells is still controversial. We hypothesized that a physiological expression level of OCT4 is important to regulate MSCs' multipotency and trigger differentiation in response to environmental signals. Here, we specifically suppressed OCT4 in MSCs by using siRNA technology before directed differentiation. OCT4 expression levels were reduced by 82% in siOCT4-MSCs, compared with controls. Interestingly, siOCT4-MSCs also presented a hypermethylated OCT4 promoter. OCT4 silencing significantly impaired the ability of MSCs to differentiate into osteoblasts. Histologic and macroscopic analysis showed a lower degree of mineralization in siOCT4-MSCs than in controls. Moreover, OCT4 silencing prevented the up-regulation of osteoblast lineage-associated genes during differentiation. Similarly, OCT4 silencing resulted in decreased MSC differentiation potential towards the adipogenic lineage. The accumulation of lipids was reduced 3.0-fold in siOCT4-MSCs, compared with controls. The up-regulation of genes engaged in the early stages of adipogenesis was also suppressed in siOCT4-MSCs. Our findings provide evidence of a functional role for OCT4 in MSCs and indicate that a basal expression of this transcription factor is essential for their multipotent capacity.

摘要

介导间充质基质/干细胞(MSCs)多能性的机制尚不清楚。虽然多能性因子 OCT4 的表达已在 MSCs 中检测到,但它在成体干细胞中是否具有功能作用仍存在争议。我们假设 OCT4 的生理表达水平对于调节 MSCs 的多能性和响应环境信号触发分化很重要。在这里,我们在定向分化前使用 siRNA 技术特异性地抑制 MSCs 中的 OCT4。与对照组相比,siOCT4-MSCs 中的 OCT4 表达水平降低了 82%。有趣的是,siOCT4-MSCs 也表现出 OCT4 启动子的超甲基化。OCT4 沉默显著损害了 MSCs 分化为成骨细胞的能力。组织学和宏观分析显示,siOCT4-MSCs 的矿化程度低于对照组。此外,OCT4 沉默阻止了成骨细胞谱系相关基因在分化过程中的上调。同样,OCT4 沉默导致 MSC 向脂肪生成谱系的分化潜能降低。siOCT4-MSCs 中的脂质积累减少了 3.0 倍,与对照组相比。参与脂肪生成早期阶段的基因的上调也在 siOCT4-MSCs 中受到抑制。我们的研究结果提供了 OCT4 在 MSCs 中具有功能作用的证据,并表明该转录因子的基础表达对于它们的多能性至关重要。

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