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深入了解 MaV203 酿酒酵母 URA3 基因的自发去阻遏及其在蛋白质工程和反向双杂交系统中的意义。

A deeper understanding of the spontaneous derepression of the URA3 gene in MaV203 Saccharomyces cerevisiae and its implications for protein engineering and the reverse two-hybrid system.

机构信息

Biomolecule Design Group, Institute for Materials Research (IMO), Hasselt University, Diepenbeek, Belgium.

Maastricht Science Programme, Maastricht University, Maastricht, The Netherlands.

出版信息

Yeast. 2019 Dec;36(12):701-710. doi: 10.1002/yea.3437. Epub 2019 Aug 21.

Abstract

Within the field of protein-based biomaterials, the need exists for both covalent and oriented bioconjugation strategies for improved performance. Such bioconjugation reactions can be facilitated by engineering proteins with chemically activated amino acids at strategically chosen sites. The incorporation of these unnatural amino acids (uAAs) can be achieved by using the nonsense suppression technique. This requires an aminoacyl-tRNA-synthetase (aaRS) that exclusively recognizes the uAA and loads it to the corresponding tRNA. Appropriate (aaRS) mutants can be found through reverse engineering using the Saccharomyces cerevisiae strain MaV203. This strain contains a counterselectable, Gal4p-inducible SPAL10::URA3 fusion and deletions in the endogenous GAL80 and GAL4 genes. Therefore, it has been used extensively for the screening of aaRS mutant libraries. It is generally assumed that the SPAL10 promoter actively represses the URA3 gene in the absence of Gal4p, resulting in MaV203 cells with a Ura phenotype. The current contribution reveals that in a small fraction of MaV203 cells, a basal expression of the URA3 gene occurs. The unexpected URA3 expression is reported for the first time, and the nature of the mutation causing this expression was identified as a spontaneous recessive mutation in a single gene of a protein involved in the repression of the SPAL10 promoter. The basal URA3 expression causes aaRS mutants to be missed, which affects the outcome of the library screening. It is demonstrated that the use of diploid cells can circumvent the MaV203 Ura phenotype, allowing for an optimization of S. cerevisiae library screening.

摘要

在蛋白质基生物材料领域,需要通过共价和定向生物偶联策略来提高性能。通过在选择的位置上对蛋白质进行化学激活的氨基酸工程,可以促进这种生物偶联反应。这些非天然氨基酸 (uAA) 的掺入可以通过使用无意义抑制技术来实现。这需要一种专门识别 uAA 并将其加载到相应 tRNA 的氨酰-tRNA 合成酶 (aaRS)。可以通过使用酿酒酵母菌株 MaV203 进行反向工程找到合适的 (aaRS) 突变体。该菌株含有可选择的、受 Gal4p 诱导的 SPAL10::URA3 融合基因,以及内源性 GAL80 和 GAL4 基因的缺失。因此,它被广泛用于筛选 aaRS 突变体文库。通常假设,在没有 Gal4p 的情况下,SPAL10 启动子会积极抑制 URA3 基因,导致 MaV203 细胞呈现 Ura 表型。目前的研究结果表明,在一小部分 MaV203 细胞中,URA3 基因会出现基础表达。这是首次报道这种意外的 URA3 表达,并确定导致这种表达的突变是参与 SPAL10 启动子抑制的单个基因中的自发隐性突变。基础 URA3 表达会导致 aaRS 突变体被忽略,这会影响文库筛选的结果。研究表明,使用二倍体细胞可以避免 MaV203 的 Ura 表型,从而优化酿酒酵母文库筛选。

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