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Nuclear positioning as an integrator of cell fate

机译:作为细胞命运的积分器的核定位

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摘要

Cells are the building units of living organisms and consequently adapt to their environment by modulating their intracellular architecture, in particular the position of their nucleus. Important efforts have been made to decipher the molecular mechanisms involved in nuclear positioning. The LINC complex at the nuclear envelope is a very important part of the molecular connectivity between the cell outside and the intranuclear compartment, and thus emerged as a central player in nuclear mechanotransduction. More recent concepts in nuclear mechanotransduction came from studies involving nuclear confined migration, compression or swelling. Also, the effect of nuclear mechanosensitive properties in driving cell differentiation raises the question of nuclear mechanotransduction and gene expression and recent efforts have been done to tackle it, even though it remains difficult to address in a direct manner. Eventually, an original mechanism of nucleus positioning, mechanotransduction and regulation of gene expression in the non-adherent, non-polarized mouse oocyte, highlights the fact that nuclear positioning is an important developmental issue.
机译:细胞是生物体的建筑单元,因此通过调节其细胞内结构,特别是核的位置来适应它们的环境。已经进行了重要的努力来破译核定位的分子机制。核包膜的LINC复合物是外部细胞和核内舱之间的分子连通性的非常重要的部分,因此作为核电机组中的中央球员出现。最近在核电机组的概念来自涉及核限制迁移,压缩或肿胀的研究。此外,核机械敏感性在驱动细胞分化中的影响提高了核电机组的问题和基因表达的问题,即使它仍然难以以直接方式解决它,也已经完成了最近的努力。最终,核定位,机械调节和基因表达中基因表达的原始机制,突出了核定位是一个重要的发展问题的事实。

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