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原束蛋白 1 限制晶状体皮质纤维细胞在伸长和成熟过程中的形态。

Tropomodulin 1 constrains fiber cell geometry during elongation and maturation in the lens cortex.

机构信息

The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

J Histochem Cytochem. 2012 Jun;60(6):414-27. doi: 10.1369/0022155412440881. Epub 2012 Apr 3.

Abstract

Lens fiber cells exhibit a high degree of hexagonal packing geometry, determined partly by tropomodulin 1 (Tmod1), which stabilizes the spectrin-actin network on lens fiber cell membranes. To ascertain whether Tmod1 is required during epithelial cell differentiation to fiber cells or during fiber cell elongation and maturation, the authors quantified the extent of fiber cell disorder in the Tmod1-null lens and determined locations of disorder by confocal microscopy and computational image analysis. First, nearest neighbor analysis of fiber cell geometry in Tmod1-null lenses showed that disorder is confined to focal patches. Second, differentiating epithelial cells at the equator aligned into ordered meridional rows in Tmod1-null lenses, with disordered patches first observed in elongating fiber cells. Third, as fiber cells were displaced inward in Tmod1-null lenses, total disordered area increased due to increased sizes (but not numbers) of individual disordered patches. The authors conclude that Tmod1 is required first to coordinate fiber cell shapes and interactions during tip migration and elongation and second to stabilize ordered fiber cell geometry during maturation in the lens cortex. An unstable spectrin-actin network without Tmod1 may result in imbalanced forces along membranes, leading to fiber cell rearrangements during elongation, followed by propagation of disorder as fiber cells mature.

摘要

晶状体纤维细胞表现出高度的六边形包装几何形状,部分由原肌球蛋白 1(Tmod1)决定,它稳定了晶状体纤维细胞膜上的血影蛋白-肌动蛋白网络。为了确定 Tmod1 是否在上皮细胞向纤维细胞分化过程中或在纤维细胞伸长和成熟过程中是必需的,作者量化了 Tmod1 缺失晶状体中纤维细胞紊乱的程度,并通过共聚焦显微镜和计算图像分析确定了紊乱的位置。首先,对 Tmod1 缺失晶状体中纤维细胞几何形状的最近邻分析表明,紊乱仅限于焦点斑块。其次,赤道处的分化上皮细胞在 Tmod1 缺失晶状体中排列成有序的子午线行,在伸长的纤维细胞中首先观察到无序斑块。第三,随着纤维细胞在 Tmod1 缺失晶状体内向内移位,由于单个无序斑块的尺寸(而非数量)增加,总无序面积增加。作者得出结论,Tmod1 首先需要协调纤维细胞在尖端迁移和伸长过程中的形状和相互作用,其次需要在晶状体皮质成熟过程中稳定有序的纤维细胞几何形状。没有 Tmod1 的不稳定的血影蛋白-肌动蛋白网络可能导致膜上的力不平衡,导致纤维细胞在伸长过程中重新排列,随后随着纤维细胞的成熟,无序状态会传播。

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