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首页> 外文期刊>Developmental cell >Patronin/Shot Cortical Foci Assemble the Noncentrosomal Microtubule Array that Specifies the Drosophila Anterior-Posterior Axis
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Patronin/Shot Cortical Foci Assemble the Noncentrosomal Microtubule Array that Specifies the Drosophila Anterior-Posterior Axis

机译:守护神/皮层皮质病灶组装指定果蝇前后轴的非中心体微管阵列

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摘要

Noncentrosomal microtubules play an important role in polarizing differentiated cells, but little is known about how these microtubules are organized. Here we identify the spectraplakin, Short stop (Shot), as the cortical anchor for noncentrosomal microtubule organizing centers (ncMTOCs) in the Drosophila oocyte. Shot interacts with the cortex through its actin-binding domain and recruits the microtubule minus-end-binding protein, Patronin, to form cortical ncMTOCs. Shot/Patronin foci do not co-localize with g-tubulin, suggesting that they do not nucleate new microtubules. Instead, they capture and stabilize existing microtubule minus ends, which then template new microtubule growth. Shot/Patronin foci are excluded from the oocyte posterior by the Par-1 polarity kinase to generate the polarized microtubule network that localizes axis determinants. Both proteins also accumulate apically in epithelial cells, where they are required for the formation of apical-basal microtubule arrays. Thus, Shot/Patronin ncMTOCs may provide a general mechanism for organizing noncentrosomal microtubules in differentiated cells.
机译:非中心体微管在极化分化的细胞中起重要作用,但对这些微管的组织方式知之甚少。在这里,我们确定频谱plakin,短停(Shot),作为果蝇卵母细胞中非中心体微管组织中心(ncMTOCs)的皮质锚。 Shot通过其肌动蛋白结合域与皮质相互作用,并募集微管负端结合蛋白Patronin,形成皮质ncMTOC。 Shot / Patronin病灶未与g-微管蛋白共定位,表明它们未使新的微管成核。取而代之的是,它们捕获并稳定了现有的微管负端,从而使新的微管生长成为模板。 Par-1极性激酶从卵母细胞后部排除了Shot / Patronin病灶,以产生定位轴决定簇的极化微管网络。两种蛋白还在顶细胞中积累,在那里它们是形成顶基微管阵列所必需的。因此,Shot / Patronin ncMTOCs可能为在分化细胞中组织非中心体微管提供一般机制。

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