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Linezolid-Dependent Function and Structure Adaptation of Ribosomes in a Staphylococcus epidermidis Strain Exhibiting Linezolid Dependence

机译:表现利奈唑胺依赖性的表皮葡萄球菌菌株中利奈唑胺依赖性功能和核糖体的结构适应

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摘要

Linezolid-dependent growth was recently reported in Staphylococcus epidermidis clinical strains carrying mutations associated with linezolid resistance. To investigate this unexpected behavior at the molecular level, we isolated active ribosomes from one of the linezolid-dependent strains and we compared them with ribosomes isolated from a wild-type strain. Both strains were grown in the absence and presence of linezolid. Detailed biochemical and structural analyses revealed essential differences in the function and structure of isolated ribosomes which were assembled in the presence of linezolid. The catalytic activity of peptidyltransferase was found to be significantly higher in the ribosomes derived from the linezolid-dependent strain. Interestingly, the same ribosomes exhibited an abnormal ribosomal subunit dissociation profile on a sucrose gradient in the absence of linezolid, but the profile was restored after treatment of the ribosomes with an excess of the antibiotic. Our study suggests that linezolid most likely modified the ribosomal assembly procedure, leading to a new functional ribosomal population active only in the presence of linezolid. Therefore, the higher growth rate of the partially linezolid-dependent strains could be attributed to the functional and structural adaptations of ribosomes to linezolid.
机译:最近在表皮葡萄球菌临床菌株中报告了利奈唑胺依赖性生长,该菌株带有与利奈唑胺抗性相关的突变。为了在分子水平上研究这种意外行为,我们从一种利奈唑胺依赖性菌株中分离了活性核糖体,并将它们与从野生型菌株中分离的核糖体进行了比较。两种菌株均在不存在利奈唑胺的情况下生长。详细的生化和结构分析表明,在利奈唑胺存在下组装的分离核糖体的功能和结构存在本质差异。发现在源自利奈唑胺依赖性菌株的核糖体中,肽基转移酶的催化活性明显更高。有趣的是,在不存在利奈唑胺的情况下,相同的核糖体在蔗糖梯度上显示出异常的核糖体亚基解离谱,但在用过量的抗生素处理核糖体后,该谱得以恢复。我们的研究表明,利奈唑胺很可能会修饰核糖体组装程序,从而导致仅在利​​奈唑胺存在下才有活性的新功能核糖体群体。因此,部分利奈唑胺依赖性菌株的较高生长速率可归因​​于核糖体对利奈唑胺的功能和结构适应性。

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