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首页> 外文期刊>Cell motility and the cytoskeleton >Positioning and capture of cell surface-associated microtubules in epithelial tendon cells that differentiate in primary embryonic Drosophila cell cultures.
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Positioning and capture of cell surface-associated microtubules in epithelial tendon cells that differentiate in primary embryonic Drosophila cell cultures.

机译:在上皮肌腱细胞中定位和捕获与细胞表面相关的微管,这些微管在原代果蝇细胞培养物中分化。

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Using primary embryonic Drosophila cell cultures, we have investigated the assembly of transcellular microtubule bundles in epidermal tendon cells. Muscles attach to the tendon cells of previously undescribed epidermal balls that form shortly after culture initiation. Basal capture of microtubule ends in cultured tendon cells is confined to discrete sites that occupy a relatively small proportion of the basal cell surface. These capturing sites are associated with hemiadherens junctions that link the ends of muscle cells to tendon cell bases. In vivo, muscle attachment and microtubule capture occur across the entire cell base. The cultured tendon cells reveal that the basal ends of their microtubules can be precisely targeted to small, pre-existing, structurally well-defined cortical capturing sites. However, a search and capture targeting procedure, such as that undertaken by kinetochore microtubules, cannot fully account for the precision of microtubule capture and positioning in tendon cells. We propose that cross-linkage of microtubules is also required to zip them into apicobasally oriented alignment, progressing from captured basal plus ends to apical minus ends. This involves repositioning of apical minus ends before they become anchored to an apical set of hemiadherens junctions. The proposal is consistent with our finding that hemiadherens junctions assemble at tendon cell bases before they do so at cell apices in both cultures and embryos. It is argued that control of microtubule positioning in the challenging spatial situations found in vitro involves the same procedures as those that operate in vivo.
机译:使用原代果蝇胚胎细胞培养,我们已经研究了表皮肌腱细胞中跨细胞微管束的组装。肌肉附着在培养开始后不久形成的先前未描述的表皮球的肌腱细胞上。在培养的肌腱细胞中微管末端的基础捕获被限制在占据基础细胞表面相对较小比例的离散位点。这些捕获位​​点与将肌肉细胞末端与肌腱细胞碱基相连的半贴壁连接相关。在体内,肌肉附着和微管捕获发生在整个细胞基础上。培养的肌腱细胞显示,其微管的基端可以精确地靶向小的,预先存在的,结构明确的皮质捕获位点。但是,搜索和捕获靶向程序(例如动粒微管所采取的程序)无法完全说明肌腱细胞中微管捕获和定位的精度。我们建议,还需要微管的交联,以将其压缩成尖顶取向,从捕获的基础正端向顶端负端发展。这涉及到先将负尖端重新定位,然后再将其固定到根尖的半贴壁连接处。该提议与我们的发现相符,即半贴壁连接在肌腱细胞基部组装,然后在培养物和胚胎中的细胞顶点处组装。有人认为,在体外发现的具有挑战性的空间情况下,对微管定位的控制涉及与体内操作相同的程序。

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