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Pom1p a fission yeast protein kinase that provides positional information for both polarized growth and cytokinesis

机译:Pom1p一种裂变酵母蛋白激酶可为极化生长和胞质分裂提供位置信息

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摘要

Schizosaccharomyces pombe cells have a well-defined pattern of polarized growth at the cell ends during interphase and divide symmetrically into two equal-sized daughter cells. We identified a gene, pom1, that provides positional information for both growth and division in S. pombe. pom1 mutants form functioning growth zones and division septa but show several abnormalities: (1) After division, cells initiate growth with equal frequencies from either the old or the new end; (2) most cells never switch to bipolar growth but instead grow exclusively at the randomly chosen end; (3) some cells mislocalize their growth axis altogether, leading to the formation of angled and branched cells; and (4) many cells misplace and/or misorient their septa, leading to asymmetric cell division. pom1 encodes a putative protein kinase that is concentrated at the new cell end during interphase, at both cell ends during mitosis, and at the septation site after mitosis. Small amounts of Pom1p are also found at the old cell end during interphase and associated with the actin ring during mitosis. Pom1p localization to the cell ends is independent of actin but requires microtubules and Tea1p. pom1 mutations are synthetically lethal with several other mutations that affect cytokinesis and/or the actin or microtubule cytoskeleton. Thus, Pom1p may position the growth and cytokinesis machineries by interaction with both the actin and microtubule cytoskeletons.
机译:裂殖酵母属粟酒裂殖酵母细胞在相间期期间在细胞末端具有明确定义的极化生长模式,并对称地分成两个相等大小的子细胞。我们鉴定了一个基因pom1,该基因可为粟酒裂殖酵母的生长和分裂提供位置信息。 pom1突变体形成正常的生长区和分裂间隔,但显示出一些异常情况:(1)分裂后,细胞以相同的频率从新旧末端开始生长; (2)大多数细胞从不切换到双极生长,而是只在随机选择的末端生长。 (3)一些细胞完全错位了其生长轴,导致形成有角度和分支的细胞; (4)许多细胞错位和/或错位其隔膜,导致细胞分裂不对称。 pom1编码一种假定的蛋白激酶,该蛋白激酶在相间期集中在新细胞末端,在有丝分裂期间集中在两个细胞末端,在有丝分裂之后集中在分隔位点。在相间期的老细胞末端也发现少量的Pom1p,在有丝分裂期与肌动蛋白环相关。 Pom1p定位到细胞末端与肌动蛋白无关,但需要微管和Tea1p。 pom1突变与影响细胞分裂和/或肌动蛋白或微管细胞骨架的其他几种突变在合成上具有致命性。因此,Pom1p可通过与肌动蛋白和微管细胞骨架的相互作用来定位生长和胞质分裂机制。

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