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Stress fibers stabilize the position of intranuclear DNA through mechanical connection with the nucleus in vascular smooth muscle cells

机译:应力纤维通过与血管平滑肌细胞中的核机械连接来稳定核内DNA的位置

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摘要

Actin stress fibers (SFs) running across the top surface of the nucleus in vascular smooth muscle cells were dissected using laser nano-dissection technique to release its pretension, and the dynamic behavior of SFs, nucleus, and intranuclear DNA were investigated. SFs shortened across the top surface of the nuclei after their dissection. The nuclei moved in the direction of SF retraction, and showed marked local deformation, indicating that SFs firmly connected to the nuclear surface. Intranuclear DNA located near and around the dissected SFs disappeared and their distribution changed markedly. These findings suggest that SFs stabilize the position of intranuclear chromatin through mechanical connection with the nucleus. The tension of SFs may be transmitted mechanically to the nucleus inducing conformational changes of intranuclear chromatin.
机译:使用激光纳米解剖技术解剖穿过血管平滑肌细胞核顶面的肌动蛋白应力纤维(SFs),以释放其张力,并研究SFs,核和核内DNA的动态行为。解剖后,SFs在细胞核顶表面变短。核向SF退缩方向移动,并显示出明显的局部变形,表明SF与核表面牢固连接。位于解剖的SFs附近和周围的核内DNA消失,它们的分布发生了明显变化。这些发现表明,SF通过与核的机械连接来稳定核内染色质的位置。 SF的张力可以机械地传递到细胞核,诱导核内染色质的构象变化。

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