首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Live imaging of cell protrusive activity, and extracellular matrix assembly and remodeling during morphogenesis in the frog, Xenopus laevis.
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Live imaging of cell protrusive activity, and extracellular matrix assembly and remodeling during morphogenesis in the frog, Xenopus laevis.

机译:实时成像的青蛙,非洲爪蟾的形态发生过程中的细胞突出活动,细胞外基质组装和重塑。

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摘要

Cell motility and matrix assembly have traditionally been studied in isolation because of a lack of suitable model systems in which both can be observed simultaneously. With embryonic tissues from the gastrulating frog Xenopus laevis we observe stages of fibronectin fibrillogenesis coincident with protrusive activity in the overlying cells. Using live confocal time-lapse images collected from Cy3-tagged fibronectin and plasma membrane tethered green fluorescent protein, we describe the movement and the elaboration of a complex fibrillar network undergoing topological rearrangements of fibrils on the surface of an embryonic tissue. Discrete processes of annealing, polymerization, stretching, breaking, and recoiling are recorded. Elaboration and maintenance of the complex topology of the extracellular matrix appears to require filamentous actin. These findings support a mechanical-model in which cell tractive forces elaborate the complex topological fibrillar network and are part of a homeostatic mechanism for the regulation of the extracellular matrix.
机译:传统上,由于缺乏可以同时观察两者的合适模型系统,因此通常单独研究细胞运动性和基质装配。利用来自胃蛙Xenopus laevis的胚胎组织,我们观察到纤连蛋白原纤维形成的阶段与上层细胞的突出活动相吻合。使用从Cy3标签纤连蛋白和质膜束缚的绿色荧光蛋白收集的实时共聚焦延时图像,我们描述了复杂纤维网络的运动和形成,该网络在胚胎组织表面上经历了原纤维的拓扑重排。记录了退火,聚合,拉伸,断裂和回卷的离散过程。细化和维持细胞外基质的复杂拓扑似乎需要丝状肌动蛋白。这些发现支持了一种机械模型,在该模型中,细胞牵引力形成了复杂的拓扑原纤维网络,并且是调节细胞外基质的体内平衡机制的一部分。

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