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Dynein-dependent Motility of Microtubules and Nucleation Sites Supports Polarization of the Tubulin Array in the Fungus Ustilago maydis

机译:动力蛋白依赖的微管和成核位点的动力支持真菌Ustilago maydis的微管蛋白阵列的极化。

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摘要

Microtubules (MTs) are often organized by a nucleus-associated MT organizing center (MTOC). In addition, in neurons and epithelial cells, motor-based transport of assembled MTs determines the polarity of the MT array. Here, we show that MT motility participates in MT organization in the fungus Ustilago maydis. In budding cells, most MTs are nucleated by three to six small and motile γ-tubulin–containing MTOCs at the boundary of mother and daughter cell, which results in a polarized MT array. In addition, free MTs and MTOCs move rapidly throughout the cytoplasm. Disruption of MTs with benomyl and subsequent washout led to an equal distribution of the MTOC and random formation of highly motile and randomly oriented MTs throughout the cytoplasm. Within 3 min after washout, MTOCs returned to the neck region and the polarized MT array was reestablished. MT motility and polarity of the MT array was lost in dynein mutants, indicating that dynein-based transport of MTs and MTOCs polarizes the MT cytoskeleton. Observation of green fluorescent protein-tagged dynein indicated that this is achieved by off-loading dynein from the plus-ends of motile MTs. We propose that MT organization in U. maydis involves dynein-mediated motility of MTs and nucleation sites.
机译:微管(MTs)通常由与核相关的MT组织中心(MTOC)组织。另外,在神经元和上皮细胞中,组装的MT的基于运动的运输决定了MT阵列的极性。在这里,我们表明MT活力参与了乌斯季亚哥(Ustilago maydis)真菌的MT组织。在出芽的细胞中,大多数MT在母细胞和子细胞的边界处被三到六个小的可移动的含γ-微管蛋白的MTOC形核,从而产生极化的MT阵列。另外,游离MT和MTOC在整个细胞质中快速移动。 MT与苯菌灵的破坏和随后的洗脱导致MTOC的均等分布以及在整个细胞质中随机形成的高迁移率和随机定向的MT。冲洗后3分钟内,MTOC返回颈部,并重新建立极化的MT阵列。在达因突变体中失去了MT的运动性和MT阵列的极性,这表明基于达因的MT和MTOC转运会极化MT细胞骨架。对绿色荧光蛋白标记的动力蛋白的观察表明,这是通过从运动MT的正端卸载动力蛋白来实现的。我们建议在美国马蒂斯的MT组织涉及动力蛋白介导的MT和成核位点的动力。

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