首页> 外文OA文献 >A Functional dlt Operon, Encoding Proteins Required for Incorporation of d-Alanine in Teichoic Acids in Gram-Positive Bacteria, Confers Resistance to Cationic Antimicrobial Peptides in Streptococcus pneumoniae
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A Functional dlt Operon, Encoding Proteins Required for Incorporation of d-Alanine in Teichoic Acids in Gram-Positive Bacteria, Confers Resistance to Cationic Antimicrobial Peptides in Streptococcus pneumoniae

机译:功能性dlt操纵子,编码在革兰氏阳性细菌的teicic酸中掺入d-丙氨酸所需的蛋白质,赋予对肺炎链球菌阳离子抗菌肽的抗性

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摘要

Streptococcus pneumoniae is one of the few species within the group of low-G +C gram-positive bacteria reported to contain no d-alanine in teichoic acids, although the dltABCD operon encoding proteins responsible for d-alanylation is present in the genomes of two S. pneumoniae strains, the laboratory strain R6 and the clinical isolate TIGR4. The annotation of dltA in R6 predicts a protein, d-alanine-d-alanyl carrier protein ligase (Dcl), that is shorter at the amino terminus than all other Dcl proteins. Translation of dltA could also start upstream of the annotated TTG start codon at a GTG, resulting in the premature termination of dltA translation at a stop codon. Applying a novel integrative translation probe plasmid with Escherichia coli ′lacZ as a reporter, we could demonstrate that dltA translation starts at the upstream GTG. Consequently, S. pneumoniae R6 is a dltA mutant, whereas S. pneumoniae D39, the parental strain of R6, and Rx, another derivative of D39, contained intact dltA genes. Repair of the stop codon in dltA of R6 and insertional inactivation of dltA in D39 and Rx yielded pairs of dltA-deficient and dltA-proficient strains. Subsequent phenotypic analysis showed that dltA inactivation resulted in enhanced sensitivity to the cationic antimicrobial peptides nisin and gallidermin, a phenotype fully consistent with those of dltA mutants of other gram-positive bacteria. In addition, mild alkaline hydrolysis of heat-inactivated whole cells released d-alanine from dltA-proficient strains, but not from dltA mutants. The results of our study suggest that, as in many other low-G+C gram-positive bacteria, teichoic acids of S. pneumoniae contain d-alanine residues in order to protect this human pathogen against the actions of cationic antimicrobial peptides.
机译:肺炎链球菌是低G + C革兰氏阳性菌群中为数不多的一种,据报道其在潮酸中不含d-丙氨酸,尽管在两个基因组中存在负责d-丙氨酰化的dltABCD操纵子编码蛋白。肺炎链球菌菌株,实验室菌株R6和临床分离株TIGR4。 R6中dltA的注释可预测蛋白质d-丙氨酸-d-丙氨酰载体蛋白连接酶(Dcl),其氨基末端比所有其他Dcl蛋白短。 dltA的翻译也可能在GTG处的带注释的TTG起始密码子的上游开始,导致dltA的翻译在终止密码子处提前终止。应用以大肠杆菌'lacZ为报告基因的新型整合翻译探针质粒,我们可以证明dltA翻译起始于上游GTG。因此,肺炎链球菌R6是dltA突变体,而R6的亲本菌株肺炎链球菌D39和D39的另一种衍生物Rx则含有完整的dltA基因。 R6的dltA中终止密码子的修复以及D39和Rx中dltA的插入失活产生了成对的dltA缺陷和dltA缺陷菌株。随后的表型分析表明,dltA失活导致对阳离子抗菌肽乳链菌肽和盖德明的敏感性增强,该表型与其他革兰氏阳性细菌的dltA突变体的表型完全一致。此外,热灭活的全细胞的轻度碱水解会从dltA熟练菌株中释放d-丙氨酸,而不会从dltA突变体中释放出来。我们的研究结果表明,与许多其他低G + C革兰氏阳性细菌一样,肺炎链球菌的chochochoic酸含有d-丙氨酸残基,以保护该人类病原体免受阳离子抗菌肽的作用。

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