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首页> 外文期刊>Molecular and Cellular Biology >Use of a screen for synthetic lethal and multicopy suppressee mutants to identify two new genes involved in morphogenesis in Saccharomyces cerevisiae.
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Use of a screen for synthetic lethal and multicopy suppressee mutants to identify two new genes involved in morphogenesis in Saccharomyces cerevisiae.

机译:筛选合成致死和多拷贝受抑制者突变体的方法,以鉴定酿酒酵母中涉及形态发生的两个新基因。

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Genes CDC24 and CDC42 are required for the establishment of cell polarity and for bud formation in Saccharomyces cerevisiae. Temperature-sensitive (Ts-) mutations in either of these genes cause arrest as large, unbudded cells in which the nuclear cycle continues. MSB1 was identified previously as a multicopy suppressor of Ts- cdc24 and cdc42 mutations. We have now sequenced MSB1 and constructed a deletion of this gene. The predicted amino acid sequence does not closely resemble any other in the available data bases, and the deletion does not produce any readily detectable phenotype. However, we have used a colony-sectoring assay to identify additional genes that appear to interact with MSB1 and play a role in bud emergence. Starting with a strain deleted for the chromosomal copy of MSB1 but containing MSB1 on a high-copy-number plasmid, mutants were identified in which MSB1 had become essential for viability. The new mutations defined two genes, BEM1 and BEM2; both the bem1 and bem2 mutations are temperature sensitive and are only partially suppressed by MSB1. In bem1 cells, a single copy of MSB1 is necessary and sufficient for viability at 23 or 30 degrees C, but even multiple copies of MSB1 do not fully suppress the growth defect at 37 degrees C. In bem2 cells, a single copy of MSB1 is necessary and sufficient for viability at 23 degrees C, multiple copies are necessary for viability at 30 degrees C, and even multiple copies of MSB1 do not suppress the growth defect at 37 degrees C. In a wild-type background (i.e., a single chromosomal copy of MSB1), both bem1 and bem2 mutations cause cells to become large and multinucleate even during growth at 23 degrees C, suggesting that these genes are involved in bud emergence. This suggestion is supported for BEM1 by other evidence obtained in a parallel study (J. Chant, K. Corrado, J. Pringle, and I. Herskowitz, submitted for publication). BEM1 maps centromere distal to TYR1 on chromosome II, and BEM2 maps between SPT15 and STP2 on chromosome V.
机译:在酿酒酵母中,基因CDC24和CDC42是建立细胞极性和芽形成所必需的。这两个基因中的温度敏感(Ts-)突变都会导致核循环继续进行的大型,未预算的细胞停滞。 MSB1以前被确定为Ts-cdc24和cdc42突变的多拷贝抑制剂。现在,我们已经对MSB1进行了测序,并构建了该基因的缺失。预测的氨基酸序列与可用数据库中的其他氨基酸序列几乎不相似,并且缺失也不产生任何易于检测的表型。但是,我们已经使用了菌落扇区测定法来鉴定似乎与MSB1相互作用并在芽萌发中起作用的其他基因。从删除了MSB1染色体拷贝但在高拷贝数质粒上包含MSB1的菌株开始,鉴定出突变体,其中MSB1已成为必需的生存力。新的突变定义了两个基因,BEM1和BEM2。 bem1和bem2突变均对温度敏感,并且仅被MSB1部分抑制。在bem1细胞中,单拷贝的MSB1是必需的,并且足够在23或30摄氏度下存活,但是即使多拷贝的MSB1也不能完全抑制37摄氏度下的生长缺陷。在bem2的细胞中,单拷贝的MSB1是对于在23摄氏度下的生存力而言是必需的和足够的,对于在30摄氏度下的生存力而言,多个副本是必需的,甚至MSB1的多个副本也不能抑制37摄氏度下的生长缺陷。在野生型背景下(即,单个染色体MSB1的副本),即使bem1和bem2突变都导致细胞变得更大且具有多核,即使在23摄氏度的生长过程中也是如此,这表明这些基因与芽的萌发有关。在平行研究中获得的其他证据也支持BEM1的这一建议(J. Chant,K。Corrado,J。Pringle和I. Herskowitz,已提交出版)。 BEM1映射II号染色体上TYR1远端的着丝粒,而BEM2映射V号染色体上SPT15和STP2之间。

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