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首页> 外文期刊>Molecular Microbiology >Microtubule plus end-tracking proteins play critical roles in directional growth of hyphae by regulating the dynamics of cytoplasmic microtubules in Aspergillus nidulans
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Microtubule plus end-tracking proteins play critical roles in directional growth of hyphae by regulating the dynamics of cytoplasmic microtubules in Aspergillus nidulans

机译:微管和末端追踪蛋白通过调节构巢曲霉中胞质微管的动力学,在菌丝的定向生长中起关键作用。

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摘要

Summary: Cytoplasmic microtubules (MTs) serve as a rate-limiting factor for hyphal tip growth in the filamentous fungus Aspergillus nidulans. We hypothesized that this function depended on the MT plus end-tracking proteins (+TIPs) including the EB1 family protein EBA that decorated the MT plus ends undergoing polymerization. The ebAΔ mutation reduced colony growth and the mutant hyphae appeared in an undulating pattern instead of exhibiting unidirectional growth in the control. These phenotypes were enhanced by a mutation in another +TIP gene clipA. EBA was required for plus end-tracking of CLIPA, the Kinesin-7 motor KipA, and the XMAP215 homologue AlpA. In addition, cytoplasmic dynein also depended on EBA to track on most polymerizing MT plus ends, but not for its conspicuous appearance at the MT ends near the hyphal apex. The loss of EBA reduced the number of cytoplasmic MTs and prolonged dwelling times for MTs after reaching the hyphal apex. Finally, we found that colonies were formed in the absence of EBA, CLIPA, and NUDA together, suggesting that they were dispensable for fundamental functions of MTs. This study provided a comprehensive delineation of the relationship among different +TIPs and their contributions to MT dynamics and unidirectional hyphal expansion in filamentous fungi.
机译:摘要:细胞质微管(MTs)作为丝状真菌构巢曲霉菌丝尖端生长的限速因子。我们假设此功能取决于MT +末端追踪蛋白(+ TIP),包括装饰MT +末端进行聚合的EB1家族蛋白EBA。 ebAΔ突变减少了菌落的生长,并且突变菌丝以波动模式出现,而不是在对照中表现出单向生长。这些表型通过另一个+ TIP基因clipA中的突变而增强。对于CLIPA,Kinesin-7电机KipA和XMAP215同源AlpA的正末尾跟踪,需要EBA。此外,细胞质动力蛋白还依赖于EBA来追踪大多数聚合MT末端,而不是其在菌丝顶点附近MT末端的明显外观。 EBA的丧失减少了到达菌丝顶点的细胞质MT的数量,延长了MT的停留时间。最后,我们发现菌落是在没有EBA,CLIPA和NUDA的情况下共同形成的,这表明它们对于MT的基本功能是必不可少的。这项研究全面描述了不同+ TIP之间的关系及其对丝状真菌MT动态和单向菌丝扩展的贡献。

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