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Influence of Lamin A on the Mechanical Properties of Amphibian Oocyte Nuclei Measured by Atomic Force Microscopy

机译:层粘连蛋白A对两性卵母细胞核力学性能的原子力显微镜测量。

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摘要

The nuclear lamina is part of the nuclear envelope (NE). Lamin filaments provide the nucleus with mechanical stability and are involved in many nuclear activities. The functional importance of these proteins is highlighted by mutations in lamin genes, which cause a variety of human diseases (laminopathies). Here we describe a method that allows one to quantify the contribution of lamin A protein to the mechanical properties of the NE. Lamin A is ectopically expressed in Xenopus oocytes, where it is incorporated into the NE of the oocyte nucleus, giving rise to a prominent lamina layer at the inner nuclear membrane. Nuclei are then isolated and probed by atomic force microscopy. From the resulting force curves, stiffness values are calculated and compared with those of control nuclei. Expression of lamin A significantly increases the stiffness of oocyte nuclei in a concentration-dependent manner. Since chromatin adds negligibly to nuclear mechanics in these giant nuclei, this method allows one to measure the contribution of individual NE components to nuclear mechanics.
机译:核层是核包膜(NE)的一部分。薄层细丝为核提供了机械稳定性,并参与许多核活动。这些蛋白的功能重要性在lamin基因突变中得到了突出,而lamin基因突变会导致多种人类疾病(拉丁病)。在这里,我们描述了一种方法,可以量化层粘连蛋白A蛋白对NE的机械性能的贡献。 Lamin A在非洲爪蟾卵母细胞中异位表达,并整合到卵母细胞核的NE中,从而在内核膜上形成一个突出的层状层。然后分离核并通过原子力显微镜探测。根据所产生的力曲线,可以计算出刚度值,并将其与控制核的刚度值进行比较。核纤层蛋白A的表达以浓度依赖性方式显着增加卵母细胞核的刚度。由于染色质在这些巨大核中对核力学的添加微不足道,因此该方法允许人们测量单个NE成分对核力学的贡献。

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