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Mutational and hyperexpression-induced disruption of bipolar budding in yeast

机译:突变和过表达诱导酵母双极芽的破坏

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Analysis of bud-site selection in the yeast Saccharomyces cerevisiae has helped to identify many genes that are generally important for eukaryotic cell polarization. Colony morphology screens were used to identify factors relevant to the process of bipolar budding in yeast. Mutants defective in bipolar budding were identified by virtue of their inability to grow as pseudohyphae in a haploid bud3 background. A mutant allele of the MYO2 gene, encoding a class-V unconventional myosin was identified that perturbs bipolar budding without affecting axial budding and without grossly affecting the role of Myo2p in secretion and maintenance of the actin cytoskeleton. Several genes were also identified whose products, when overexpressed, are capable of disrupting bipolar budding. Among these are the actin-monomer-binding protein profilin and the Aip3p/Bud6p-interacting protein Atc1p. The results strongly support involvement of the actin cytoskeleton in the establishment of bipolar budding and in the maintenance of pseudohyphal growth.
机译:酵母酿酒酵母中的芽位选择分析有助于鉴定许多对真核细胞极化重要的基因。菌落形态屏幕用于识别与酵母双极芽的过程相关的因素。通过不能在单倍体Bud3背景中作为假海豚生长为双极芽造成的突变体。鉴定了编码V类非常规肌苷的MyO2基因的突变等位基因,术扰动双极芽,而不会影响轴向萌芽,而不会严重影响MyO 2P在分泌和维持肌动蛋白细胞骨架中的作用。还鉴定了几种基因,其产品在过表达时能够破坏双极芽。其中,是肌动蛋白 - 单体结合蛋白质泛素和AIP3P / BUD6P相互作用蛋白ATC1P。结果强烈支持肌动蛋白细胞骨架的涉及在建立双极芽面和维持假鼠生长的情况下。

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