Kazakov Teymur, Kuznedelov Konstantin, Semenova Ekaterina, Mukhamedyarov Damir, Datsenko Kirill A, Metlitskaya Anastasija, Vondenhoff Gaston H, Tikhonov Anton, Agarwal Vinayak, Nair Satish, Van Aerschot Arthur, Severinov Konstantin
Waksman Institute, Piscataway, New Jersey, USA.
Purdue University, West Lafayette, Indiana, USA.
J Bacteriol. 2014 Oct;196(19):3377-85. doi: 10.1128/JB.01584-14. Epub 2014 Jul 7.
Peptide-nucleotide antibiotic microcin C (McC) is produced by some Escherichia coli strains. Inside a sensitive cell, McC is processed, releasing a nonhydrolyzable analog of aspartyl-adenylate, which inhibits aspartyl-tRNA synthetase. The product of mccE, a gene from the plasmid-borne McC biosynthetic cluster, acetylates processed McC, converting it into a nontoxic compound. MccE is homologous to chromosomally encoded acetyltransferases RimI, RimJ, and RimL, which acetylate, correspondingly, the N termini of ribosomal proteins S18, S5, and L12. Here, we show that E. coli RimL, but not other Rim acetyltransferases, provides a basal level of resistance to McC and various toxic nonhydrolyzable aminoacyl adenylates. RimL acts by acetylating processed McC, which along with ribosomal protein L12 should be considered a natural RimL substrate. When overproduced, RimL also makes cells resistant to albomycin, an antibiotic that upon intracellular processing gives rise to a seryl-thioribosyl pyrimidine that targets seryl-tRNA synthetase. We further show that E. coli YhhY, a protein related to Rim acetyltransferases but without a known function, is also able to detoxify several nonhydrolyzable aminoacyl adenylates but not processed McC. We propose that RimL and YhhY protect bacteria from various toxic aminoacyl nucleotides, either exogenous or those generated inside the cell during normal metabolism.
肽 - 核苷酸类抗生素小菌素C(McC)由一些大肠杆菌菌株产生。在敏感细胞内,McC被加工处理,释放出一种天冬氨酰 - 腺苷酸的不可水解类似物,它会抑制天冬氨酰 - tRNA合成酶。mccE基因是质粒携带的McC生物合成簇中的一个基因,其产物会使加工后的McC乙酰化,将其转化为无毒化合物。MccE与染色体编码的乙酰转移酶RimI、RimJ和RimL同源,它们分别使核糖体蛋白S18、S5和L12的N端乙酰化。在这里,我们表明大肠杆菌的RimL,而非其他Rim乙酰转移酶,能提供对McC和各种有毒的不可水解氨酰腺苷酸的基础抗性水平。RimL通过使加工后的McC乙酰化来发挥作用,加工后的McC连同核糖体蛋白L12应被视为RimL的天然底物。当过量表达时,RimL还能使细胞对白霉素产生抗性,白霉素在细胞内加工后会产生一种靶向丝氨酰 - tRNA合成酶的丝氨酰 - 硫代核糖基嘧啶。我们进一步表明,大肠杆菌的YhhY是一种与Rim乙酰转移酶相关但功能未知的蛋白质,它也能够使几种不可水解氨酰腺苷酸解毒,但不能使加工后的McC解毒。我们提出,RimL和YhhY保护细菌免受各种有毒氨酰核苷酸的侵害,这些氨酰核苷酸要么是外源性的,要么是在正常代谢过程中细胞内产生的。