Selvaraju Suresh B, Khan Izhar U H, Yadav Jagjit S
Molecular Toxicology Division, Department of Environmental Health, University of Cincinnati Medical Center, Cincinnati, OH 45267-0056, USA.
Mol Cell Probes. 2005 Apr;19(2):93-9. doi: 10.1016/j.mcp.2004.09.007. Epub 2004 Dec 15.
Members of the Mycobacterium chelonae complex (MCC), namely M. chelonae, Mycobacterium abscessus and Mycobacterium immunogenum, have been implicated in nosocomial infections and occupational respiratory illnesses like hypersensitivity pneumonitis (HP) associated with contaminated metalworking fluid (MWF) exposures. Close relationship among these member species makes their differentiation cumbersome using the existing methods. Here we report a simple and rapid method for unambiguous identification and differentiation of the three-member species of the MCC group with PCR-restriction analysis targeting a 667-bp segment of a variable region of the 65-kDa-heat shock protein (hsp65) gene. This assay, described as Amplified hsp65 Restriction Analysis (AHSPRA), can discriminate all the three individual species using a one-step restriction digestion using either BbvI or Eco0109I. The enzyme NarI can differentiate M. immunogenum from the other two MCC species (M. chelonae and M. abscessus). The developed method was validated using several non-MCC reference species of other rapidly growing mycobacteria (RGM) and MCC field isolates from MWF samples. Direct cell-lysis was used instead of the conventional DNA template preparation, which improved the rapidity, simplicity and adaptability of the developed method. The results suggest that the developed method can unambiguously differentiate species of the M. chelonae complex from other RGM species and from one another.
龟分枝杆菌复合群(MCC)的成员,即龟分枝杆菌、脓肿分枝杆菌和免疫分枝杆菌,与医院感染和职业性呼吸道疾病有关,如与接触受污染的金属加工液(MWF)相关的超敏性肺炎(HP)。这些成员菌种之间的密切关系使得使用现有方法对它们进行区分变得繁琐。在此,我们报告一种简单快速的方法,通过针对65 kDa热休克蛋白(hsp65)基因可变区的667 bp片段进行PCR限制性分析,明确鉴定和区分MCC组的这三个成员菌种。该检测方法被称为扩增hsp65限制性分析(AHSPRA),使用BbvI或Eco0109I进行一步限制性消化,可区分所有这三个单独的菌种。NarI酶可以将免疫分枝杆菌与其他两种MCC菌种(龟分枝杆菌和脓肿分枝杆菌)区分开来。使用几种其他快速生长分枝杆菌(RGM)的非MCC参考菌种以及来自MWF样本的MCC现场分离株对所开发的方法进行了验证。使用直接细胞裂解代替传统的DNA模板制备,提高了所开发方法的快速性、简便性和适应性。结果表明,所开发的方法可以明确区分龟分枝杆菌复合群的菌种与其他RGM菌种以及它们彼此之间的差异。