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评估酿酒酵母中不可删除的染色体区域对细胞活力是否必需的系统方法。

Systematic approach for assessing whether undeletable chromosomal regions in Saccharomyces cerevisiae are required for cell viability.

作者信息

Hassan Naim, Easmin Farhana, Sasano Yu, Ekino Keisuke, Taguchi Hisataka, Harashima Satoshi

机构信息

Department of Applied Microbial Technology, Faculty of Biotechnology and Life Science, Sojo University, Ikeda 4-22-1, Nishi-ku, Kumamoto, 860-0082, Japan.

出版信息

AMB Express. 2020 Apr 15;10(1):73. doi: 10.1186/s13568-020-01001-x.

Abstract

Previously, we identified 49 undeletable chromosomal regions harboring only non-essential genes in the genome of Saccharomyces cerevisiae. We proposed that there might be unknown synthetic lethal combinations of genes present in such undeletable regions of the genome. In this study, we chose four of the smallest undeletable chromosomal regions among the 49 and performed extensive further analyses to narrow down the gene-pairs responsible for lethality by replacing sub-regions in various combinations with a DNA module comprising the CgLEU2 marker. Although the methodology was different from previous study, interestingly the results revealed that not only the sub-regions but also the entire region was replaceable. To solve the apparent discrepancy between previous and present results, we further conducted additional analysis including investigation of suppressor mutation and mini-chromosome loss assay through the construction of mini-chromosome harboring two particular chromosomal regions with marked with URA3 marker by employing 5-FOA system. Based upon careful observation on the phenotype of colony formation on 5-FOA medium by spot test, we came to an important conclusion that particular chromosomal regions harboring only non-essential genes can be categorized into three classes, i.e., essential, non-essential and intrinsically essential. Intrinsically essential region is defined as appearance of papillae after mini-chromosome loss which implicates that the region is essential but compensatable against cell lethality. Our present study indicates that prudent and multiple approaches as performed in this study are needed to judge whether a particular chromosomal region of the S. cerevisiae genome is essential, non-essential or intrinsically essential but compensatable.

摘要

此前,我们在酿酒酵母基因组中鉴定出49个仅包含非必需基因的不可删除染色体区域。我们提出,在基因组的此类不可删除区域中可能存在未知的基因合成致死组合。在本研究中,我们从这49个区域中选择了四个最小的不可删除染色体区域,并进行了广泛的进一步分析,通过用包含CgLEU2标记的DNA模块以各种组合替换子区域,来缩小导致致死性的基因对范围。尽管方法与先前的研究不同,但有趣的是,结果表明不仅子区域,整个区域也是可替换的。为了解决先前和当前结果之间明显的差异,我们进一步进行了额外的分析,包括通过构建带有URA3标记的两个特定染色体区域的微型染色体,利用5-FOA系统研究抑制突变和微型染色体丢失试验。基于通过点试验对5-FOA培养基上菌落形成表型的仔细观察,我们得出了一个重要结论,即仅包含非必需基因的特定染色体区域可分为三类,即必需、非必需和内在必需。内在必需区域定义为微型染色体丢失后出现乳头,这意味着该区域是必需的,但可补偿细胞致死性。我们目前的研究表明,需要像本研究中所采用的那样谨慎和多种方法来判断酿酒酵母基因组的特定染色体区域是必需、非必需还是内在必需但可补偿的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b21d/7158983/18438ffc7861/13568_2020_1001_Fig1_HTML.jpg

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