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首页> 外文期刊>Molecular Microbiology >Septum formation is regulated by the RHO4-specific exchange factors BUD3 and RGF3 and by the landmark protein BUD4 in Neurospora crassa.
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Septum formation is regulated by the RHO4-specific exchange factors BUD3 and RGF3 and by the landmark protein BUD4 in Neurospora crassa.

机译:隔垫的形成受神经孢菌中RHO4特异性交换因子BUD3和RGF3以及标志性蛋白BUD4的调控。

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摘要

Rho GTPases have multiple, yet poorly defined functions during cytokinesis. By screening a Neurospora crassa knock-out collection for Rho guanine nucleotide exchange factor (GEF) mutants that phenocopy rho-4 defects (i.e. lack of septa, slow growth, abnormal branching and cytoplasmic leakage), we identified two strains defective in homologues of Bud3p and Rgf3 of budding and fission yeast respectively. The function of these proteins as RHO4-specific GEFs was determined by in vitro assays. In vivo microscopy suggested that the two GEFs and their target GTPase act as two independent modules during the selection of the septation site and the actual septation process. Furthermore, we determined that the N. crassa homologue of the anillinrelated protein BUD4 is required for septum initiation and that its deficiency leads to typical rho4 defects. Localization of BUD4 as a cortical ring prior to septation initiation was independent of functional BUD3 or RGF3. These data position BUD4 upstream of both RHO4 functions in the septation process and make BUD4 a prime candidate for a cortical marker protein involved in the selection of future septation sites. The persistence of both BUD proteins and of RHO4 at the septal pore suggests additional functions of these proteins at mature septa.
机译:Rho GTPases在胞质分裂过程中具有多种功能,但功能不明确。通过筛选Neurospora crassa基因敲除集合,以观察表型rho-4缺陷(即缺乏隔,生长缓慢,分支异常和细胞质泄漏)的Rho鸟嘌呤核苷酸交换因子(GEF)突变体,我们鉴定了两个在Bud3p同源物中有缺陷的菌株和芽裂酵母的Rgf3。这些蛋白作为RHO4特异性GEF的功能通过体外测定来确定。体内显微镜显示,在选择分隔位点和实际分隔过程中,两个GEF及其目标GTPase充当两个独立的模块。此外,我们确定了与安尼林相关的蛋白质BUD4的N. crassa同源物是间隔启动所需的,其缺乏会导致典型的rho4缺陷。在分隔开始前,BUD4作为皮质环的定位独立于功能性BUD3或RGF3。这些数据将BUD4定位在分隔过程中两个RHO4的上游,并使BUD4成为参与未来分隔位点选择的皮质标记蛋白的主要候选对象。 BUD蛋白和RHO4在间隔孔处的持久性表明,这些蛋白在成熟间隔处的附加功能。

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