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Isolation and transcriptional characterization of three genes which function at start the controlling event of the Saccharomyces cerevisiae cell division cycle: CDC36 CDC37 and CDC39.

机译:啤酒酵母细胞分裂周期的控制事件开始时起作用的三个基因的分离和转录特征:CDC36CDC37和CDC39。

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摘要

The genes CDC36, CDC37, and CDC39, thought to function in the cell division control process in Saccharomyces cerevisiae, were isolated from a recombinant plasmid library prepared by partial digestion of S. cerevisiae genomic DNA with Sau3A and insertion into the S. cerevisiae-Escherichia coli shuttle vector YRp7. In each case, S. cerevisiae DNA sequences were identified which could complement mutant alleles of the gene in question and which could direct integration of a plasmid at the chromosomal location known to correspond to that gene. Complementing DNA segments were subcloned to remove extraneous coding regions. The coding regions corresponding to CDC36, CDC37, and CDC39 were then identified and localized by R-loop analysis. The estimated sizes of the three coding regions were 615, 1,400, and 2,700 base pairs, respectively. Transcriptional orientation of the coding regions was established by using M13 vectors to prepare strand-specific probes followed by hybridization to blots of electrophoresed S. cerevisiae mRNA. The intracellular steady-state abundance of the mRNA species corresponding to the genes was estimated by comparing hybridization signals on RNA blots to that of a previously determined standard, the cell cycle start gene CDC28. The quantities calculated for the three mRNA species were low, ranging from 1.5 +/- 1 copies per haploid cell for the CDC36 mRNA to 3.1 +/- 1.5 and 4.6 +/- 2 copies per haploid cell for the CDC37 and CDC39 mRNAs, respectively. The CDC28 mRNA had been previously estimated at 7.0 +/- 2 copies per cell.
机译:从通过用Sau3A部分消化啤酒酵母基因组DNA并将其插入啤酒酵母中制备的重组质粒文库中分离了认为在啤酒酵母的细胞分裂控制过程中起作用的基因CDC36,CDC37和CDC39。大肠杆菌穿梭载体YRp7。在每种情况下,鉴定出酿酒酵母DNA序列,它们可以补充所讨论基因的突变等位基因,并且可以指导质粒整合到已知与该基因相对应的染色体位置。互补的DNA片段被亚克隆以去除无关的编码区。然后通过R-环分析鉴定和定位对应于CDC36,CDC37和CDC39的编码区。三个编码区的估计大小分别为615、1,400和2,700个碱基对。通过使用M13载体制备链特异性探针,然后与电泳酿酒酵母mRNA印迹杂交,来确定编码区的转录方向。通过将RNA印迹上的杂交信号与先前确定的标准(细胞周期起始基因CDC28)的杂交信号进行比较,可以估算出与该基因相对应的mRNA种类的细胞内稳态丰度。为这三种mRNA种类计算的数量很低,分别为CDC36 mRNA每个单倍体细胞1.5 +/- 1拷贝到CDC37和CDC39 mRNA每个单倍体细胞3.1 +/- 1.5和4.6 +/- 2拷贝。 。先前已经估计CDC28 mRNA为每个细胞7.0 +/- 2个拷贝。

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