首页> 美国卫生研究院文献>Journal of Bacteriology >Duplication of Teichoic Acid Biosynthetic Genes in Staphylococcus aureus Leads to Functionally Redundant Poly(Ribitol Phosphate) Polymerases
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Duplication of Teichoic Acid Biosynthetic Genes in Staphylococcus aureus Leads to Functionally Redundant Poly(Ribitol Phosphate) Polymerases

机译:金黄色葡萄球菌中teichoic acid生物合成基因的复制导致功能冗余的聚磷酸核糖醇聚合酶。

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摘要

Wall teichoic acids are anionic phosphate-rich polymers that are part of the complex meshwork of carbohydrates that make up the gram-positive cell wall. These polymers are essential to the proper rod-shaped morphology of Bacillus subtilis and have been shown to be an important virulence determinant in the nosocomial opportunistic pathogen Staphylococcus aureus. Together, sequence-based studies, in vitro experiments with biosynthetic proteins, and analyses of the chemical structure of wall teichoic acid have begun to shed considerable light on our understanding of the biogenesis of this polymer. Nevertheless, some paradoxes remain unresolved. One of these involves a putative duplication of genes linked to CDP-ribitol synthesis (tarI′J′ and tarIJ) as well as poly(ribitol phosphate) polymerization (tarK and tarL) in S. aureus. In the work reported here, we performed careful studies of the dispensability of each gene and discovered a functional redundancy in the duplicated gene clusters. We were able to create mutants in either of the putative ribitol phosphate polymerases (encoded by tarK and tarL) without affecting teichoic acid levels in the S. aureus cell wall. Although genes linked to CDP-ribitol synthesis are also duplicated, a null mutant in only one of these (tarI′J′) could be obtained, while tarIJ remained essential. Suppression analysis of the tarIJ null mutant indicated that the mechanism of dysfunction in tarI′J′ is due to poor translation of the TarJ′ enzyme, which catalyzes the rate-limiting step in CDP-ribitol formation. This work provides new insights into understanding the complex synthetic steps of the ribitol phosphate polymer in S. aureus and has implications on specifically targeting enzymes involved in polymer biosynthesis for antimicrobial design.
机译:壁板壁酸是富含阴离子的磷酸酯聚合物,是构成革兰氏阳性细胞壁的碳水化合物复杂网状结构的一部分。这些聚合物对于枯草芽孢杆菌的正确杆状形态必不可少,并已被证明是医院机会病原体金黄色葡萄球菌的重要毒力决定因素。总之,基于序列的研究,生物合成蛋白的体外实验以及壁壁chochochoic acid的化学结构分析开始为我们对这种聚合物的生物发生的理解提供了可观的启示。然而,一些悖论仍未解决。其中之一涉及金黄色葡萄球菌中与CDP-核糖醇合成(tarI'J'和tarIJ)以及聚(磷酸核糖醇磷酸)聚合(tarK和tarL)相关的基因的假定复制。在这里报道的工作中,我们对每个基因的可分配性进行了仔细的研究,并发现了重复的基因簇中的功能冗余。我们能够在任何一种假定的核糖醇磷酸酯聚合酶(由tarK和tarL编码)中创建突变体,而不会影响金黄色葡萄球菌细胞壁中的磷壁酸水平。尽管也复制了与CDP-核糖醇合成相关的基因,但仅在其中一个(tarI'J')中可获得无效突变体,而tarIJ仍然是必需的。对tarIJ null突变体的抑制分析表明,tarI' J '中功能障碍的机制是由于TarJ'酶的翻译不佳,从而催化了CDP-核糖醇形成中的限速步骤。这项工作为理解 S中核糖醇磷酸酯聚合物的复杂合成步骤提供了新的见识。金黄色葡萄球菌,并且对于专门针对参与聚合物生物合成的抗菌设计的酶具有重要意义。

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