纤层蛋白微聚集体导致表达早衰蛋白的细胞机械传递的改变。

Brooke E Danielsson, Katie V Tieu, Kranthidhar Bathula, Travis J Armiger, Pragna S Vellala, Rebecca E Taylor, Kris Noel Dahl, Daniel E Conway
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引用次数: 3

摘要

核层是由中间丝蛋白组成的网状结构,而核层蛋白a是主要的机械蛋白。层粘连蛋白A剪接的改变,被称为早衰蛋白,会导致哈钦森-吉尔福德早衰综合征。表达早衰蛋白的细胞细胞核形状改变,核层硬化,有早衰蛋白微聚集体。图中显示,层内的早衰蛋白微聚集包涵体可导致细胞和多细胞功能障碍。我们通过Comsol模拟表明,硬化的包裹体会导致通常均匀的力的重新分布,这种重新分布取决于刚度差,相对独立于包裹体大小。我们还显示了在封闭和外力作用下细胞中与早衰蛋白表达相关的机械传递变化。表达progerin的内皮细胞不与模式正确对齐。表达progerin的成纤维细胞不能正确地与施加的循环力对齐。综上所述,这些研究表明核膜力学和微观结构的改变会影响细胞骨架力在细胞中的传递。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Lamin microaggregates lead to altered mechanotransmission in progerin-expressing cells.

Lamin microaggregates lead to altered mechanotransmission in progerin-expressing cells.

Lamin microaggregates lead to altered mechanotransmission in progerin-expressing cells.

Lamin microaggregates lead to altered mechanotransmission in progerin-expressing cells.

The nuclear lamina is a meshwork of intermediate filament proteins, and lamin A is the primary mechanical protein. An altered splicing of lamin A, known as progerin, causes the disease Hutchinson-Gilford progeria syndrome. Progerin-expressing cells have altered nuclear shapes and stiffened nuclear lamina with microaggregates of progerin. Here, progerin microaggregate inclusions in the lamina are shown to lead to cellular and multicellular dysfunction. We show with Comsol simulations that stiffened inclusions causes redistribution of normally homogeneous forces, and this redistribution is dependent on the stiffness difference and relatively independent of inclusion size. We also show mechanotransmission changes associated with progerin expression in cells under confinement and cells under external forces. Endothelial cells expressing progerin do not align properly with patterning. Fibroblasts expressing progerin do not align properly to applied cyclic force. Combined, these studies show that altered nuclear lamina mechanics and microstructure impacts cytoskeletal force transmission through the cell.

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