Akada Rinji, Hirosawa Isao, Kawahata Miho, Hoshida Hisashi, Nishizawa Yoshinori
Department of Applied Chemistry and Chemical Engineering, Faculty of Engineering, Yamaguchi University, Tokiwadai, Ube 755-8611, Japan.
Yeast. 2002 Mar 30;19(5):393-402. doi: 10.1002/yea.841.
Counter-selection is a useful gene manipulation technique for repeated gene disruptions, gene shufflings and gene replacements in yeasts. We developed a novel counter-selection system using a galactose-inducible growth inhibitory sequence (Kawahata et al.1999. Yeast 15: 1-10). This counter-selection marker, named GAL10p-GIN11, has several advantages over previous counter-selection markers, i.e. use of an inexpensive galactose medium for counter-selection, combined use with any transformation markers for gene introduction, and no requirement of specific mutations in the host strains. The GIN11 sequence, which is a part of an X-element of the subtelomeric regions, contained a conserved autonomously replicating sequence, causing the possibility of inefficient chromosomal integration. We isolated GIN11 mutants that lost the replication activity but retained the growth-inhibitory effect when overexpressed. A mutant GIN11M86 sequence was selected and fused to the CUP1 promoter for the counter-selection on a copper-containing medium. The GALp-GIN11M86 and the CUPp-GIN11M86 were used for constructing sets of integrating plasmids containing auxotrophic markers involving HIS3, TRP1, LEU2, URA3 or ADE2, or a drug-resistant marker PGKp-YAP1. In addition, a set of gene disruption cassettes that contained each of the auxotrophic markers and the GALp-GIN11M86, which were flanked by direct repeats of a hisG sequence, were constructed. The counter-selectable integrating plasmids and the gene disruption cassettes can allow the markers to be used repeatedly for yeast gene manipulations.
反选择是一种用于酵母中重复基因破坏、基因改组和基因替换的有用基因操作技术。我们开发了一种使用半乳糖诱导生长抑制序列的新型反选择系统(Kawahata等人,1999年。《酵母》15: 1 - 10)。这个名为GAL10p - GIN11的反选择标记相对于以前的反选择标记有几个优点,即使用廉价的半乳糖培养基进行反选择,可与任何用于基因导入的转化标记联合使用,并且宿主菌株无需特定突变。GIN11序列是亚端粒区域X元件的一部分,包含一个保守的自主复制序列,这导致染色体整合效率低下的可能性。我们分离出了GIN11突变体,这些突变体失去了复制活性,但在过表达时仍保留生长抑制作用。选择了一个突变的GIN11M86序列,并将其与CUP1启动子融合,用于在含铜培养基上进行反选择。GALp - GIN11M86和CUPp - GIN11M86用于构建包含涉及HIS3、TRP1、LEU2、URA3或ADE2的营养缺陷型标记或耐药标记PGKp - YAP1的整合质粒组。此外,构建了一组基因破坏盒,其包含每个营养缺陷型标记和两侧为hisG序列直接重复序列的GALp - GIN11M86。可反选择的整合质粒和基因破坏盒能够使这些标记重复用于酵母基因操作。