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用于分枝杆菌基因分型鉴定的新型质谱分析工具。

Novel mass spectrometry-based tool for genotypic identification of mycobacteria.

作者信息

Lefmann Michael, Honisch Christiane, Böcker Sebastian, Storm Niels, von Wintzingerode Friedrich, Schlötelburg Cord, Moter Annette, van den Boom Dirk, Göbel Ulf B

机构信息

Institut für Mikrobiologie und Hygiene, Universitätsklinikum Charité, Humboldt-Universität zu Berlin, Germany.

出版信息

J Clin Microbiol. 2004 Jan;42(1):339-46. doi: 10.1128/JCM.42.1.339-346.2004.

Abstract

Matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) after base-specific cleavage of PCR amplified and in vitro-transcribed 16S rRNA gene (rDNA) was used for the identification of mycobacteria. Full-length 16S rDNA reference sequences of 12 type strains of Mycobacterium spp. frequently isolated from clinical specimens were determined by PCR, cloning, and sequencing. For MALDI-TOF MS-based comparative sequence analysis, mycobacterial 16S rDNA signature sequences ( approximately 500 bp) of the 12 type strains and 24 clinical isolates were PCR amplified using RNA promoter-tagged forward primers. T7 RNA polymerase-mediated transcription of forward strands in the presence of 5-methyl ribo-CTP maximized mass differences of fragments generated by base-specific cleavage. In vitro transcripts were subsequently treated with RNase T1, resulting in G-specific cleavage. Sample analysis by MALDI-TOF MS showed a specific mass signal pattern for each of the 12 type strains, allowing unambiguous identification. All 24 clinical isolates were identified unequivocally by comparing their detected mass signal pattern to the reference sequence-derived in silico pattern of the type strains and to the in silico mass patterns of published 16S rDNA sequences. A 16S rDNA microheterogeneity of the Mycobacterium xenopi type strain (DSM 43995) was detected by MALDI-TOF MS and later confirmed by Sanger dideoxy sequencing. In conclusion, analysis of 16S rDNA amplicons by MS after base-specific cleavage of RNA transcripts allowed fast and reliable identification of the Mycobacterium tuberculosis complex and ubiquitous mycobacteria (mycobacteria other than tuberculosis). The technology delivers an open platform for high-throughput microbial identification on the basis of any specific genotypic marker region.

摘要

在对聚合酶链反应(PCR)扩增及体外转录的16S核糖体RNA基因(rDNA)进行碱基特异性切割后,采用基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)对分枝杆菌进行鉴定。通过PCR、克隆和测序确定了12种常见于临床标本中的分枝杆菌属模式菌株的全长16S rDNA参考序列。对于基于MALDI-TOF MS的比较序列分析,使用带有RNA启动子标签的正向引物对12种模式菌株和24株临床分离株的分枝杆菌16S rDNA特征序列(约500 bp)进行PCR扩增。在5-甲基核糖-CTP存在的情况下,T7 RNA聚合酶介导正义链的转录,使碱基特异性切割产生的片段质量差异最大化。随后,体外转录本用核糖核酸酶T1处理,导致G特异性切割。MALDI-TOF MS的样本分析显示了12种模式菌株各自的特定质量信号模式,从而实现明确鉴定。通过将24株临床分离株检测到的质量信号模式与模式菌株参考序列衍生的电子模式以及已发表的16S rDNA序列的电子质量模式进行比较,明确鉴定了所有24株临床分离株。通过MALDI-TOF MS检测到偶发分枝杆菌模式菌株(DSM 43995)的16S rDNA微异质性,随后通过桑格双脱氧测序得到证实。总之,在对RNA转录本进行碱基特异性切割后,通过质谱分析16S rDNA扩增子能够快速、可靠地鉴定结核分枝杆菌复合群和常见分枝杆菌(非结核分枝杆菌)。该技术为基于任何特定基因型标记区域的高通量微生物鉴定提供了一个开放平台。

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