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Type 1 protein phosphatase is required for maintenance of cell wall integrity, morphogenesis and cell cycle progression in Saccharomyces cerevisiae

机译:维持酿酒酵母细胞壁完整性,形态发生和细胞周期进程需要1型蛋白磷酸酶

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GLC7 encodes the catalytic subunit of type 1 protein serine/threonine phosphatase (PP1) in the yeast Saccharomyces cerevisiae. Here we have characterized the temperature-sensitive glc7-10 allele, which displays aberrant bud morphology and an abnormal actin cytoskeleton at the restrictive temperature. At 37 degrees C glc7-10 strains accumulated a high proportion of budded cells with an unmigrated nucleus, duplicated spindle pole bodies, a short spindle, delocalized cortical actin and 2C DNA content, indicating a cell cycle block prior to the metaphase to anaphase transition. glc7-10 was suppressed by growth on high osmolarity medium and exhibited temperature-sensitive cell lysis upon hypo-osmotic stress, Pkc1p, the yeast protein kinase C homolog which is thought to regulate the Mpk1p MAP kinase pathway involved in cell wall remodelling and polarized cell growth, was found to act as a dosage suppressor of glc7-10. Although neither activation of BCK1 (MEKK) by the dominant BCK1-20 mutation nor increased dosage of MKK1 (MEK) or MPK1 (MAP kinase) mimicked PKC1 as a glc7-10 dosage suppressor, extra copies of genes encoding upstream components of the Pkc1p pathway such as ROM2, RHO2, HCS77/WSC1/SLG1 and MID2 also suppressed glc7-10 effectively. Conversely, mpk1 Delta glc7-10 and bck1 Delta glc7-10 double mutants displayed a synthetic cell lysis defect compared with each single mutant and glc7-10 was hypersensitive to reduced PKC1 function, displaying highly aberrant morphologies and inviability even at the normally permissive temperature of 26 degrees C. Dephosphorylation by PP1 therefore functions positively to promote cell integrity, bud morphology and polarization of the actin cytoskeleton and glc7-10 cells require higher levels of Pkc1p activity to sustain these functions. [References: 77]
机译:GLC7编码啤酒酵母中1型蛋白丝氨酸/苏氨酸磷酸酶(PP1)的催化亚基。在这里,我们表征了对温度敏感的glc7-10等位基因,该基因在限制温度下显示异常的芽形态和异常的肌动蛋白细胞骨架。在37摄氏度时,glc7-10菌株积聚了高比例的芽胞,具有未迁移的核,重复的纺锤极体,短纺锤,离体的皮质肌动蛋白和2C DNA含量,表明在中期到后期过渡之前,细胞周期受阻。 glc7-10在高渗透压培养基上的生长受到抑制,并且在低渗应激,酵母蛋白激酶C同源物Pkc1p(被认为调节参与细胞壁重塑和极化细胞的Mpk1p MAP激酶途径)时表现出对温度敏感的细胞裂解。发现其生长可作为glc7-10的剂量抑制剂。尽管既没有通过显性BCK1-20突变激活BCK1(MEKK),也没有通过增加剂量的MKK1(MEK)或MPK1(MAP激酶)来模仿PKC1作为glc7-10剂量抑制剂,但是编码Pkc1p途径上游成分的基因的额外拷贝ROM2,RHO2,HCS77 / WSC1 / SLG1和MID2等也可以有效抑制glc7-10。相反,与每个单个突变体相比,mpk1 Delta glc7-10和bck1 Delta glc7-10双突变体显示出合成的细胞裂解缺陷,并且glc7-10对降低的PKC1功能非常敏感,即使在正常的允许温度下,也表现出高度异常的形态和不稳定性。 26摄氏度。PP1的去磷酸化因此起促进细胞完整性,芽形态和肌动蛋白细胞骨架极化的作用,而glc7-10细胞需要更高水平的Pkc1p活性来维持这些功能。 [参考:77]

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