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Emergence of a prestressed eukaryotic nucleus during cellular differentiation and development

机译:细胞分化和发育过程中预应力真核细胞的出现

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摘要

Nuclear shape and size are emerging as mechanistic regulators of genome function. Yet, the coupling between chromatin assembly and various nuclear and cytoplasmic scaffolds is poorly understood. The present work explores the structural organization of a prestressed nucleus in a variety of cellular systems ranging from cells in culture to those in an organism. A combination of laser ablation and cellular perturbations was used to decipher the dynamic nature of the nucleo-cytoplasmic contacts. In primary mouse embryonic fibroblasts, ablation of heterochromatin nodes caused an anisotropic shrinkage of the nucleus. Depolymerization of actin and microtubules, and inhibition of myosin motors, resulted in the differential stresses that these cytoplasmic systems exert on the nucleus. The onset of nuclear prestress was then mapped in two contexts—first, in the differentiation of embryonic stem cells, where signatures of prestress appeared with differentiation; second, at an organism level, where nuclear or cytoplasmic laser ablations of cells in the early Drosophila embryo induced a collapse of the nucleus only after cellularization. We thus show that the interplay of physical connections bridging the nucleus with the cytoplasm governs the size and shape of a prestressed eukaryotic nucleus.
机译:核的形状和大小正在成为基因组功能的机械调节剂。然而,人们对染色质组装体与各种核和细胞质支架之间的耦合了解甚少。本工作探讨了从培养中的细胞到生物体中的各种细胞系统中预应力核的结构组织。激光烧蚀和细胞扰动的组合被用来解密核质接触的动态性质。在原代小鼠胚胎成纤维细胞中,异染色质淋巴结的切除引起细胞核的各向异性收缩。肌动蛋白和微管的解聚,以及肌球蛋白运动的抑制,导致这些细胞质系统施加在细胞核上的不同应力。然后在两个背景下绘制核预应力的发作图:首先,在胚胎干细胞的分化中,预应力的信号随着分化而出现;其次,在生物体水平上,果蝇早期胚胎中细胞的核或细胞质激光消融仅在细胞化后才引起细胞核塌陷。因此,我们表明桥接细胞核与细胞质的物理连接的相互作用决定了预应力真核的大小和形状。

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