首页> 外文期刊>Nucleic Acids Research >Insights into the structure, function and evolution of the radical-SAM 23S rRNA methyltransferase Cfr that confers antibiotic resistance in bacteria.
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Insights into the structure, function and evolution of the radical-SAM 23S rRNA methyltransferase Cfr that confers antibiotic resistance in bacteria.

机译:深入了解赋予细菌抗药性的自由基-SAM 23S rRNA甲基转移酶Cfr的结构,功能和进化。

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摘要

The Cfr methyltransferase confers combined resistance to five classes of antibiotics that bind to the peptidyl tranferase center of bacterial ribosomes by catalyzing methylation of the C-8 position of 23S rRNA nucleotide A2503. The same nucleotide is targeted by the housekeeping methyltransferase RlmN that methylates the C-2 position. Database searches with the Cfr sequence have revealed a large group of closely related sequences from all domains of life that contain the conserved CXCXC motif characteristic of radical S-adenosyl-L-methionine (SAM) enzymes. Phylogenetic analysis of the Cfr/RlmN family suggests that the RlmN subfamily is likely the ancestral form, whereas the Cfr subfamily arose via duplication and horizontal gene transfer. A structural model of Cfr has been calculated and used as a guide for alanine mutagenesis studies that corroborate the model-based predictions of a 4Fe-4S cluster, a SAM molecule coordinated to the iron-sulfur cluster (SAM1) and a SAM molecule that is the putative methyl group donor (SAM2). All mutations at predicted functional sites affect Cfr activity significantly as assayed by antibiotic susceptibility testing and primer extension analysis. The investigation has identified essential amino acids and Cfr variants with altered reaction mechanisms and represents a first step towards understanding the structural basis of Cfr activity.
机译:Cfr甲基转移酶通过催化23S rRNA核苷酸A2503的C-8位甲基化,赋予五种与细菌核糖体肽基转移酶中心结合的抗生素的综合耐药性。管家甲基转移酶RlmN靶向相同的核苷酸,该甲基化C-2位。使用Cfr序列进行的数据库搜索显示了来自生命各个领域的一大组紧密相关的序列,其中包含S-腺苷-L-蛋氨酸自由基(SAM)酶的保守CXCXC基序。对Cfr / RlmN家族的系统发育分析表明,RlmN家族可能是祖先形式,而Cfr家族通过复制和水平基因转移而产生。已计算出Cfr的结构模型,并用作丙氨酸诱变研究的指南,该研究证实了基于模型的4Fe-4S团簇,与铁硫团簇(SAM1)配位的SAM分子和SAM分子的基于模型的预测。假定的甲基供体(SAM2)。如通过抗生素敏感性测试和引物延伸分析所测定,在预测的功能位点处的所有突变均显着影响Cfr活性。该研究已经确定了具有改变的反应机理的必需氨基酸和Cfr变体,这是了解Cfr活性结构基础的第一步。

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