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Asymmetric Microtubule Function Is an Essential Requirement for Polarized Organization of the Drosophila Bristle

机译:不对称的微管功能是果蝇刷毛的极化组织的基本要求。

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While previous studies have shown that microtubules (MTs) are essential for maintaining the highly biased axial growth of the Drosophila bristle, the mechanism for this process has remained vague. We report that the MT minus-end marker, Nod-KHC, accumulates at the bristle tip, suggesting that the MT network in the bristle is organized minus end out. Potential markers for studying the importance of properly polarized MTs to bristle axial growth are Ik2 and Spindle-F (Spn-F), since mutations in spn-F and ik2 affect bristle development. We demonstrate that Spn-F and Ik2 are localized to the bristle tip and that mutations in ik2 and spn-F affect bristle MT and actin organization. Specifically, mutation in ik2 affects polarized bristle MT function. It was previously found that the hook mutant exhibited defects in bristle polarity and that hook is involved in endocytic trafficking. We found that Hook is localized at the bristle tip and that this localization is affected in ik2 mutants, suggesting that the contribution of MTs within the bristle shaft is important for correct endocytic trafficking. Thus, our results show that MTs are organized in a polarized manner within the highly elongated bristle and that this organization is essential for biased bristle axial growth.
机译:尽管先前的研究表明,微管(MTs)对于维持果蝇鬃的轴向高度偏向生长至关重要,但该过程的机理仍然不清楚。我们报告说,MT负端标记Nod-KHC聚集在鬃毛尖端,表明鬃毛中的MT网络是负端组织的。研究适当极化的MT对刷毛轴向生长的重要性的潜在标记是Ik2和Spindle-F(Spn-F),因为 spn-F ik2 的突变会影响刷毛发展。我们证明Spn-F和Ik2定位于刷毛尖端,并且 ik2 spn-F 中的突变影响刷毛MT和肌动蛋白的组织。具体而言, ik2 中的突变会影响极化的刷毛MT功能。以前发现 hook 突变体在刷毛极性上表现出缺陷,并且 hook 参与了内吞运输。我们发现胡克(Hook)定位在刷毛尖端,并且在 ik2 突变体中也受到该定位的影响,这表明在刷毛轴内MT的贡献对于正确的内吞运输非常重要。因此,我们的结果表明,MT在高度细长的刷毛内以极化方式组织,并且该组织对于偏向的刷毛轴向生长必不可少。

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