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Mechanical regulation of nuclear structure and function

机译:机械调节核结构和功能

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摘要

Mechanical loading induces both nuclear distortion and alterations in gene expression in a variety of cell types. Mechanotransduction is the process by which extracellular mechanical forces can activate a number of well-studied cytoplasmic signaling cascades. Inevitably, such signals are transduced to the nucleus and induce transcription factormediated changes in gene expression. However, gene expression also can be regulated through alterations in nuclear architecture, providing direct control of genome function. One putative transduction mechanism for this phenomenon involves alterations in nuclear architecture that result from the mechanical perturbation of the cell. This perturbation is associated with direct mechanical strain or osmotic stress, which is transferred to the nucleus. This review describes the current state of knowledge relating the nuclear architecture and the transfer of mechanical forces to the nucleus mediated by the cytoskeleton, the nucleoskeleton, and the LINC (linker of the nucleoskeleton and cytoskeleton) complex. Moreover, remodeling of the nucleus induces alterations in nuclear stiffness, which may be associated with cell differentiation. These phenomena are discussed in relation to the potential influence of nuclear architecture-mediated mechanoregulation of transcription and cell fate.
机译:机械负荷会在多种细胞类型中诱导核畸变和基因表达的改变。机械转导是细胞外机械力可以激活许多经过充分研究的细胞质信号级联反应的过程。不可避免地,此类信号被转导至细胞核并诱导转录因子介导的基因表达变化。然而,基因表达也可以通过改变核结构来调节,从而提供对基因组功能的直接控制。这种现象的一种推测的转导机制涉及细胞机械扰动引起的核结构改变。这种扰动与直接的机械应变或渗透应力有关,该应力或应力被转移至细胞核。这篇综述描述了有关核结构以及由细胞骨架,核骨架和LINC(核骨架和细胞骨架的连接子)介导的机械力向核的转移的知识的当前状态。此外,核的重塑诱导核硬度的改变,这可能与细胞分化有关。讨论了有关核结构介导的转录和细胞命运的机械调节的潜在影响的这些现象。

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