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一些戈登分枝杆菌菌株的高效液相色谱双簇模式归因于其二羧酸霉菌酸含量。

The HPLC-double-cluster pattern of some Mycobacterium gordonae strains is due to their dicarboxy-mycolate content.

作者信息

Astola José, Muñoz Manuel, Sempere Marco, Coll Pere, Luquin Marina, Valero-Guillén Pedro L

机构信息

Departament de Genètica i Microbiologia, Universitat Autònoma de Barcelona, Spain1.

Hospital Costa del Sol, Marbella, Málaga, Spain2.

出版信息

Microbiology (Reading). 2002 Oct;148(Pt 10):3119-3127. doi: 10.1099/00221287-148-10-3119.

Abstract

The mycolic acids of several strains of Mycobacterium gordonae were examined by chromatographic and spectroscopic techniques. Both HPLC and TLC revealed two patterns of mycolates among the M. gordonae strains studied. As determined by TLC, one pattern was composed of alpha-, methoxy- and keto-mycolates; the other was composed of these mycolates plus an additional component, which was identified as dicarboxy-mycolates. The dicarboxy-mycolates were only found in those M. gordonae strains that displayed a so-called HPLC-double-cluster pattern. Detailed structural analyses of the dicarboxy-mycolates indicated that these compounds contained predominantly 61-65 carbon atoms (C(63) was the major component) and a trans-1,2-disubstituted cyclopropane ring. Thus, the dicarboxy-mycolate content of strains of M. gordonae determines their HPLC pattern. In spite of the differences in their HPLC patterns, and although they belonged to different PCR-restriction length polymorphism clusters, all of the M. gordonae strains examined in this study were closely related on the basis of the structural features of their alpha-, keto- and methoxy-mycolates; the predominant alpha-mycolates contained two cis-1,2-disubstituted cyclopropane rings, the major keto-mycolates contained a trans-1,2-disubstituted cyclopropane ring and the methoxy-mycolates contained one cis- or one trans-1,2-disubstituted cyclopropane ring. It is noteworthy that the strains containing dicarboxy-mycolates also displayed significant amounts of alpha-mycolates that contained one cis-1,2-disubstituted cyclopropane ring and one cis double bond. The results obtained in this study demonstrate heterogeneity among M. gordonae strains.

摘要

采用色谱和光谱技术对几株戈登分枝杆菌的分枝菌酸进行了检测。高效液相色谱(HPLC)和薄层色谱(TLC)均显示,在所研究的戈登分枝杆菌菌株中,分枝菌酸存在两种模式。通过TLC测定,一种模式由α-、甲氧基-和酮基-分枝菌酸组成;另一种模式除了这些分枝菌酸外,还含有一种额外成分,经鉴定为二羧基-分枝菌酸。二羧基-分枝菌酸仅在那些呈现所谓HPLC双簇模式的戈登分枝杆菌菌株中发现。对二羧基-分枝菌酸的详细结构分析表明,这些化合物主要含有61 - 65个碳原子(C(63)是主要成分)和一个反式-1,2-二取代环丙烷环。因此,戈登分枝杆菌菌株的二羧基-分枝菌酸含量决定了它们的HPLC模式。尽管它们的HPLC模式存在差异,并且尽管它们属于不同的PCR限制性片段长度多态性簇,但本研究中检测的所有戈登分枝杆菌菌株基于其α-、酮基-和甲氧基-分枝菌酸的结构特征密切相关;主要的α-分枝菌酸含有两个顺式-1,2-二取代环丙烷环,主要的酮基-分枝菌酸含有一个反式-1,2-二取代环丙烷环,甲氧基-分枝菌酸含有一个顺式或一个反式-1,2-二取代环丙烷环。值得注意的是,含有二羧基-分枝菌酸的菌株还显示出大量含有一个顺式-1,2-二取代环丙烷环和一个顺式双键的α-分枝菌酸。本研究获得的结果表明戈登分枝杆菌菌株之间存在异质性。

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