首页> 外文期刊>Molecular biology of the cell >Prominent Actin Fiber Arrays in Drosophila Tendon Cells Represent Architectural Elements Different from Stress Fibers
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Prominent Actin Fiber Arrays in Drosophila Tendon Cells Represent Architectural Elements Different from Stress Fibers

机译:果蝇肌腱细胞中突出的肌动蛋白纤维阵列代表不同于应力纤维的建筑元素。

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Tendon cells are specialized cells of the insect epidermis that connect basally attached muscle tips to the cuticle on their apical surface via prominent arrays of microtubules. Tendon cells of Drosophila have become a useful genetic model system to address questions with relevance to cell and developmental biology. Here, we use light, confocal, and electron microscopy to present a refined model of the subcellular organization of tendon cells. We show that prominent arrays of F-actin exist in tendon cells that fully overlap with the microtubule arrays, and that type II myosin accumulates in the same area. The F-actin arrays in tendon cells seem to represent a new kind of actin structure, clearly distinct from stress fibers. They are highly resistant to F-actin-destabilizing drugs, to the application of myosin blockers, and to loss of integrin, Rho1, or mechanical force. They seem to represent an important architectural element of tendon cells, because they maintain a connection between apical and basal surfaces even when microtubule arrays of tendon cells are dysfunctional. Features reported here and elsewhere for tendon cells are reminiscent of the structural and molecular features of support cells in the inner ear of vertebrates, and they might have potential translational value.
机译:肌腱细胞是昆虫表皮的特殊细胞,它们通过显着的微管阵列将基本附着的肌肉尖端连接到其顶表面的表皮。果蝇的肌腱细胞已经成为解决与细胞和发育生物学有关的问题的有用的遗传模型系统。在这里,我们使用光,共聚焦和电子显微镜来呈现肌腱细胞亚细胞组织的精确模型。我们显示,F-肌动蛋白的突出阵列存在于与微管阵列完全重叠的肌腱细胞中,并且II型肌球蛋白累积在同一区域。肌腱细胞中的F-肌动蛋白阵列似乎代表了一种新型的肌动蛋白结构,明显不同于应力纤维。它们对破坏F-肌动蛋白的药物,肌球蛋白阻滞剂的应用以及对整联蛋白,Rho1或机械力的丧失具有高度抵抗力。它们似乎代表了肌腱细胞的重要结构元素,因为即使在肌腱细胞的微管阵列功能失调的情况下,它们仍可保持根尖表面与基底表面之间的连接。此处和其他地方报道的关于肌腱细胞的特征使人联想到脊椎动物内耳中支持细胞的结构和分子特征,它们可能具有潜在的翻译价值。

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