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Gamma-tubulin is essential for acentrosomal microtubule nucleation and coordination of late mitotic events in Arabidopsis

机译:γ-微管蛋白对于拟南芥中的人染色体微管成核和协调晚期有丝分裂事件至关重要

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Gamma-tubulin is required for microtubule (MT) nucleation at MT organizing centers such as centrosomes or spindle pole bodies, but little is known about its noncentrosomal functions. We conditionally downregulated gamma-tubulin by inducible expression of RNA interference (RNAi) constructs in Arabidopsis thaliana. Almost complete RNAi depletion of gamma-tubulin led to the absence of MTs and was lethal at the cotyledon stage. After induction of RNAi expression, gamma-tubulin was gradually depleted from both cytoplasmic and microsomal fractions. In RNAi plants with partial loss of gamma-tubulin, MT recovery after drug-induced depolymerization was impaired. Similarly, immunodepletion of gamma-tubulin from Arabidopsis extracts severely compromised in vitro polymerization of MTs. Reduction of gamma-tubulin protein levels led to randomization and bundling of cortical MTs. This finding indicates that MT-bound gamma-tubulin is part of a cortical template guiding the microtubular network and is essential for MT nucleation. Furthermore, we found that cells with decreased levels of gamma-tubulin could progress through mitosis, but cytokinesis was strongly affected. Stepwise diminution of gamma-tubulin allowed us to reveal roles for MT nucleation in plant development, such as organization of cell files, anisotropic and polar tip growth, and stomatal patterning. Some of these functions of gamma-tubulin might be independent of MT nucleation.
机译:γ-微管蛋白是MT组织中心(如中心体或纺锤体)上微管(MT)成核所必需的,但对其非中心体功能了解甚少。我们通过拟南芥中的RNA干扰(RNAi)构建体的诱导表达有条件下调γ-微管蛋白。 γ-微管蛋白的几乎完全RNAi消耗导致MT的缺失,并在子叶阶段致死。诱导RNAi表达后,γ-微管蛋白逐渐从细胞质和微粒体组分中耗尽。在γ-微管蛋白部分丢失的RNAi植物中,药物诱导的解聚反应后MT的恢复受到损害。同样,拟南芥提取物的γ-微管蛋白的免疫耗竭严重破坏了MT的体外聚合。 γ-微管蛋白蛋白水平的降低导致皮质MT的随机化和捆绑。该发现表明MT结合的γ-微管蛋白是引导微管网络的皮质模板的一部分,并且对于MT成核是必不可少的。此外,我们发现γ-微管蛋白水平降低的细胞可通过有丝分裂进行,但胞质分裂受到强烈影响。 γ-微管蛋白的逐步减少使我们能够揭示MT成核在植物发育中的作用,例如组织细胞文件,各向异性和极尖生长以及气孔图案。 γ-微管蛋白的某些功能可能与MT成核无关。

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