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Integrin activation and internalization on soft ECM as a mechanism of induction of stem cell differentiation by ECM elasticity

机译:整合素在软性ECM上的激活和内在化是通过ECM弹性诱导干细胞分化的机制

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摘要

The mechanism by which ECM elasticity induces lineage specification of stem cells has not been clearly understood. Integrins are well-documented mechanosensors that are positioned at the beginning of the sensing pathway. By using an antibody specifically recognizing the active conformation of β1 integrin, we observed that β1 integrin activation in bone marrow mesenchymal stem cells (BMMSCs) was induced by soft substrate to a significantly greater degree than by stiff substrate. In contrast, however, the level of cell surface integrin on soft substrate was significantly lower than that on stiff substrate. Soft substrate markedly enhanced the internalization of integrin, and this internalization was mediated mainly through caveolae/raft-dependent endocytosis. The inhibition of integrin internalization blocked the neural lineage specification of BMMSCs on soft substrate. Furthermore, soft substrate also repressed the bone morphogenetic protein (BMP)/Smad pathway at least partially through integrin-regulated BMP receptor endocytosis. A theoretical analysis based on atomic force microscopy (AFM) data indicated that integrin–ligand complexes are more easily ruptured on soft substrate; this outcome may contribute to the enhancement of integrin internalization on soft substrate. Taken together, our results suggest that ECM elasticity affects integrin activity and trafficking to modulate integrin BMP receptor internalization, thus contributing to stem cell lineage specification.
机译:ECM弹性诱导干细胞谱系规范的机制尚不清楚。整联蛋白是有据可查的机械传感器,位于传感路径的起点。通过使用特异性识别β1整联蛋白活性构象的抗体,我们观察到,骨髓基质干细胞(BMMSCs)中的β1整联蛋白激活被软基质诱导的程度明显大于被硬基质诱导的程度。相反,软基质上的细胞表面整联蛋白水平明显低于硬基质上的。软底物显着增强了整联蛋白的内在化,而这种内在化主要是通过小窝/筏依赖性内吞作用介导的。整联蛋白内在化的抑制作用阻断了软基质上BMMSC的神经谱系规范。此外,软底物还至少部分通过整联蛋白调节的BMP受体内吞作用抑制了骨形态发生蛋白(BMP)/ Smad途径。基于原子力显微镜(AFM)数据的理论分析表明,整联蛋白-配体复合物在软质底物上更容易破裂。该结果可能有助于增强软基质上整合素的内在化。综上所述,我们的结果表明,ECM弹性会影响整联蛋白的活性和运输,以调节整联蛋白BMP受体的内在化,从而有助于干细胞谱系规范。

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