核膜空间组织的量化作为细胞分类的工具。

ISRN molecular biology Pub Date : 2013-11-07 eCollection Date: 2013-01-01 DOI:10.1155/2013/374385
Christiaan H Righolt, Diana A Zatreanu, Vered Raz
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引用次数: 1

摘要

核膜是核膜的结构支架,在染色质组织和基因表达中发挥多种调节作用,并在核稳定性中发挥结构作用。层状蛋白,也被称为层状蛋白,决定核的层状组织,决定核的形状和细胞核的结构完整性。此外,层粘连蛋白与细胞核和细胞质结构相连,形成一种动态的细胞结构,其形状随外部和内部信号而变化。当与核膜结合时,核膜是可移动的,对核膜结构产生影响,并可能引起其调节功能的变化。核膜形状的改变引起细胞功能的改变。对这些结构变化的定量描述可以提供对细胞功能变化的无偏描述。在这篇综述中,我们描述了如何通过核膜层板的三维图像来测量核层板的变化,并讨论了如何利用核层板的结构变化来进行细胞分类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Quantification of the Spatial Organization of the Nuclear Lamina as a Tool for Cell Classification.

The nuclear lamina is the structural scaffold of the nuclear envelope that plays multiple regulatory roles in chromatin organization and gene expression as well as a structural role in nuclear stability. The lamina proteins, also referred to as lamins, determine nuclear lamina organization and define the nuclear shape and the structural integrity of the cell nucleus. In addition, lamins are connected with both nuclear and cytoplasmic structures forming a dynamic cellular structure whose shape changes upon external and internal signals. When bound to the nuclear lamina, the lamins are mobile, have an impact on the nuclear envelop structure, and may induce changes in their regulatory functions. Changes in the nuclear lamina shape cause changes in cellular functions. A quantitative description of these structural changes could provide an unbiased description of changes in cellular function. In this review, we describe how changes in the nuclear lamina can be measured from three-dimensional images of lamins at the nuclear envelope, and we discuss how structural changes of the nuclear lamina can be used for cell classification.

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