异源表达揭示了来自非传统生物技术相关酵母菌种的Trk +进口商的独特特性,以及它们支持酿酒酵母生长的潜力。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-02-01 DOI:10.1002/yea.3834
Klára Papoušková, Marcos Gómez, Marie Kodedová, José Ramos, Olga Zimmermannová, Hana Sychrová
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引用次数: 0

摘要

在酿酒酵母菌模型中,Trk1是主要的K+输入源。它参与了许多重要的生理过程,如离子稳态的维持、细胞体积、细胞内pH值和质膜电位。ScTrk1蛋白可以引起工业界的极大兴趣,因为研究表明,其活性的变化会影响酿酒酵母的乙醇产量和耐受性,以及在有机酸或高铵存在下低K+条件下的细胞性能。非常规酵母菌由于其独特的特性和作为编码具有不寻常特征的蛋白质的基因的潜在来源而引起了人们的关注。在这项工作中,我们旨在研究和比较四种与生物技术相关的酵母——汉斯德巴氏酵母、沃内奇Hortaea werneckii、马氏克卢维酵母和脂解耶氏酵母的Trk蛋白,这些酵母可以耐受各种极端环境。在缺乏内源性Trk输入源的酿酒酵母细胞中的异源表达表明,所研究的Trk蛋白在不同培养条件下(如低K+或有毒阳离子的存在)支持细胞生长、降低质膜电位或吸收Rb+的能力存在差异。对Trks支持酿酒酵母野生型菌株抗逆性的潜力的研究表明,脂解酵母Trk1是提高细胞对低K+和高盐耐受性的有前途的工具,并且酿酒酵母自身Trk1的过量生产在高毒性Li+离子存在下改善细胞生长最有效。
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Heterologous expression reveals unique properties of Trk K+ importers from nonconventional biotechnologically relevant yeast species together with their potential to support Saccharomyces cerevisiae growth.

In the model yeast Saccharomyces cerevisiae, Trk1 is the main K+ importer. It is involved in many important physiological processes, such as the maintenance of ion homeostasis, cell volume, intracellular pH, and plasma-membrane potential. The ScTrk1 protein can be of great interest to industry, as it was shown that changes in its activity influence ethanol production and tolerance in S. cerevisiae and also cell performance in the presence of organic acids or high ammonium under low K+ conditions. Nonconventional yeast species are attracting attention due to their unique properties and as a potential source of genes that encode proteins with unusual characteristics. In this work, we aimed to study and compare Trk proteins from Debaryomyces hansenii, Hortaea werneckii, Kluyveromyces marxianus, and Yarrowia lipolytica, four biotechnologically relevant yeasts that tolerate various extreme environments. Heterologous expression in S. cerevisiae cells lacking the endogenous Trk importers revealed differences in the studied Trk proteins' abilities to support the growth of cells under various cultivation conditions such as low K+ or the presence of toxic cations, to reduce plasma-membrane potential or to take up Rb+ . Examination of the potential of Trks to support the stress resistance of S. cerevisiae wild-type strains showed that Y. lipolytica Trk1 is a promising tool for improving cell tolerance to both low K+ and high salt and that the overproduction of S. cerevisiae's own Trk1 was the most efficient at improving the growth of cells in the presence of highly toxic Li+ ions.

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ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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