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链霉菌 albus J1074 mia 突变体的遗传分析表明,转录后 tRNA 修饰与生理特性之间存在复杂关系。

Genetic analysis of Streptomyces albus J1074 mia mutants suggests complex relationships between post-transcriptional tRNA modifications and physiological traits.

机构信息

Department of Genetics and Biotechnology, Ivan Franko National University of Lviv, 4 Hrushevskoho st, Lviv, 79005, Ukraine.

Department of Physics of Earth, Ivan Franko National University of Lviv, 4 Hrushevskoho st, Lviv, 79005, Ukraine.

出版信息

Folia Microbiol (Praha). 2020 Dec;65(6):1009-1015. doi: 10.1007/s12223-020-00811-7. Epub 2020 Jul 17.

Abstract

Proteins MiaA and MiaB catalyze sequential isopentenylation and methylthiolation, respectively, of adenosine residue in 37th position of tRNA. The mia mutations were recently shown by us to affect secondary metabolism and morphology of Streptomyces. However, it remained unknown as to whether both or one of the aforementioned modifications is critical for colony development and antibiotic production. Here, we addressed this issue through analysis of Streptomyces albus J1074 strains carrying double miaAmiaB knockout or extra copy of miaB gene. The double mutant differed from wild-type and miaA-minus strains in severity of morphological defects, growth dynamics, and secondary metabolism. Introduction of extra copy of miaB gene into miaA mutant restored aerial mycelium formation to the latter on certain solid media. Hence, miaB gene might be involved in tRNA thiomethylation in the absence of miaA; either MiaA- or MiaB-mediated modification appears to be enough to support normal metabolic and morphological processes in Streptomyces.

摘要

MiaA 和 MiaB 蛋白分别催化 tRNA 第 37 位腺苷残基的异戊烯基化和甲基硫代化。我们最近的研究表明,mia 突变会影响链霉菌的次生代谢和形态。然而,目前尚不清楚上述修饰中的两种或其中一种对菌落发育和抗生素产生是否至关重要。在此,我们通过分析携带双 miaAmiaB 敲除或 miaB 基因额外拷贝的白色链霉菌 J1074 菌株来解决这个问题。与野生型和 miaA 缺失菌株相比,双突变体在形态缺陷、生长动态和次生代谢方面存在严重差异。将 miaB 基因的额外拷贝导入 miaA 突变体后,后者在某些固体培养基上恢复了气生菌丝的形成。因此,在没有 miaA 的情况下,miaB 基因可能参与 tRNA 的硫甲基化;无论是 MiaA 还是 MiaB 介导的修饰,似乎都足以支持链霉菌的正常代谢和形态过程。

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