Kannan K B, Katoch V M, Bharadwaj V P, Sharma V D, Datta A K, Shivannavar C T
Indian J Lepr. 1985 Jul-Sep;57(3):542-8.
Glyoxylate by-pass of tricarboxylic acid cycle (TCA) comes into prominence during survival of microorganisms under oxygen limitations and study of these enzymes may contribute to understanding of physiology of 'persisters' in various mycobacterial diseases. The enzymes of glyoxylate by-pass have been assayed in the extracts of various mycobacterial species, namely, M. tuberculosis H37Rv, M. tuberculosis H37Ra, M. flavescens, M. vaccae, M. smegmatis and Mycobacteria strain w (M.w.). M.w. has been included because of its close antigenic resemblance to M. leprae. It has been found that all of the above investigated species possess isocitrate lyase and malate synthetase, the key enzymes of glyoxylate by-pass. The presence of the enzymes is being reported for the first time in M. flavescens, M. vaccae and M.w. whereas these were earlier shown to be present in M. tuberculosis and M. smegmatis. It was also demonstrated in M.w. where acetate alone could not serve as sole source of carbon, but in the presence of glycerol stimulates the activity of glyoxylate pathway enzymes. The importance of these findings has been discussed.
三羧酸循环(TCA)的乙醛酸旁路在微生物于氧气受限条件下生存期间变得显著,对这些酶的研究可能有助于理解各种分枝杆菌疾病中“持留菌”的生理学特性。已对多种分枝杆菌菌株的提取物中的乙醛酸旁路酶进行了测定,这些菌株包括结核分枝杆菌H37Rv、结核分枝杆菌H37Ra、微黄分枝杆菌、母牛分枝杆菌、耻垢分枝杆菌和分枝杆菌菌株w(M.w.)。之所以纳入M.w.,是因为它与麻风分枝杆菌有密切的抗原相似性。已发现上述所有研究的菌株都具有异柠檬酸裂合酶和苹果酸合酶,这两种是乙醛酸旁路的关键酶。微黄分枝杆菌、母牛分枝杆菌和M.w.中首次报道了这些酶的存在,而它们之前已被证明存在于结核分枝杆菌和耻垢分枝杆菌中。在M.w.中还证明了,单独的乙酸盐不能作为唯一碳源,但在甘油存在的情况下会刺激乙醛酸途径酶的活性。已讨论了这些发现的重要性。