首页> 美国卫生研究院文献>Journal of Bacteriology >A cdc-like autolytic Saccharomyces cerevisiae mutant altered in budding site selection is complemented by SPO12 a sporulation gene.
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A cdc-like autolytic Saccharomyces cerevisiae mutant altered in budding site selection is complemented by SPO12 a sporulation gene.

机译:在发芽位点选择中改变的类似cdc的自溶啤酒酵母突变体由SPO12(一种孢子形成基因)补充。

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摘要

LYT1 is an essential gene for the growth and morphogenesis of Saccharomyces cerevisiae. A detailed characterization of mutants carrying the lyt1-1 allele showed that this mutation was recessive and pleiotropic, affecting both mitotic and meiotic functions. At the nonpermissive temperature of 37 degrees C, lyt1 haploid strains budded at a distal position (instead of an axial one, as in wild-type haploid strains) and underwent autolysis when the buds were almost the size of the mother cells. These mitotic alterations in cell stability and budding topology were dependent on growth and protein synthesis. Autolysis was prevented by inhibiting DNA synthesis (with hydroxyurea) or by blocking the assembly of microtubules (with benomyl), suggesting that loss of cell viability must occur at a fixed mitotic cycle stage after DNA synthesis and mitotic spindle assembly. On the other hand, lyt1-1/lyt1-1 diploids failed to sporulate at both 24 and 37 degrees C. Taking into account these characteristics, the lyt1 mutant could be considered a cdc-like mutant. By genetic transformation of an appropriate lyt1 strain with a genomic library, ligated to the multicopy vector YEp13, we isolated a gene capable of complementing mitotic alterations but not the meiotic defect. This was the sporulation-specific gene SPO12, which is expressed under the control of the locus MAT in meiosis and is also expressed in the mitotic cycle (V. Parkes and L. H. Johnston, Nucleic Acids Res. 20:5617-5623, 1992). A significant level of SPO12 mRNA can be detected when this gene is inserted in a multicopy plasmid.
机译:LYT1是酿酒酵母生长和形态发生的重要基因。携带lyt1-1等位基因的突变体的详细表征表明,该突变是隐性和多效性的,影响有丝分裂和减数分裂功能。在37°C的非许可温度下,lyt1单倍体菌株在远端位置发芽(而不是轴向型,如野生型单倍体菌株一样),并且当芽的大小接近母细胞大小时就进行自溶。这些细胞稳定性和出芽拓扑的有丝分裂变化取决于生长和蛋白质合成。通过抑制DNA合成(使用羟基脲)或阻止微管的组装(使用苯菌灵)来防止自溶,这表明细胞活力的丧失必须发生在DNA合成和有丝分裂纺锤体组装后的固定有丝分裂周期阶段。另一方面,lyt1-1 / lyt1-1二倍体未能在24和37摄氏度下形成孢子。考虑到这些特征,lyt1突变体可被认为是cdc样突变体。通过基因组库连接到多拷贝载体YEp13的合适lyt1菌株的遗传转化,我们分离出了一种能够补充有丝分裂改变而不是减数分裂缺陷的基因。这是孢子特异性基因SPO12,其在减数分裂中在基因座MAT的控制下表达,并且也在有丝分裂周期中表达(V.Parkes和L.H.Johnston,Nucleic Acids Res.20:5617-5623,1992)。当将该基因插入多拷贝质粒中时,可以检测到显着水平的SPO12 mRNA。

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