Mohammed K A S, Miles R J, Halablab M A
Department of Life Sciences, King's College London, Franklin-Wilkins Building, London, UK.
Lett Appl Microbiol. 2004;39(3):261-6. doi: 10.1111/j.1472-765X.2004.01574.x.
The main aim was to investigate the patterns and kinetics of substrate oxidation by Campylobacter jejuni and C. coli.
Substrate oxidation profiles by 100 strains were determined using oxygen electrode system. All the isolates tested oxidized formate, l-lactate, cysteine, glutamine and serine with high oxidation rates and high affinity but varied in their ability to oxidize citric acid cycle intermediates, aspartic acid and serine.
Based on the oxidation ability of alpha-ketoglutarate, succinate, fumarate and aspartic acid, Campylobacter strains tested were divided into three distinct metabolic categories. The first group was able to metabolize alpha-ketoglutarate, succinate, fumarate and aspartic acid; the second group was unable to oxidize alpha-ketoglutarate; and the third group was unable to oxidize, succinate, fumarate, and aspartic acid. Furthermore, serine oxidation rate enabled the differentiation of C. jejuni and C. coli.
Overall, the results highlights the extensive metabolic diversity between and within Campylobacter species. In addition, the kinetic data of oxidized substrates obtained may improve the isolation procedures of the organism.
主要目的是研究空肠弯曲菌和大肠弯曲菌底物氧化的模式和动力学。
使用氧电极系统测定了100株菌株的底物氧化谱。所有测试菌株均能高效氧化甲酸、L-乳酸、半胱氨酸、谷氨酰胺和丝氨酸,且氧化速率高、亲和力强,但它们氧化柠檬酸循环中间产物、天冬氨酸和丝氨酸的能力存在差异。
根据α-酮戊二酸、琥珀酸、富马酸和天冬氨酸的氧化能力,将测试的弯曲菌菌株分为三个不同的代谢类别。第一组能够代谢α-酮戊二酸、琥珀酸、富马酸和天冬氨酸;第二组不能氧化α-酮戊二酸;第三组不能氧化琥珀酸、富马酸和天冬氨酸。此外,丝氨酸氧化速率可区分空肠弯曲菌和大肠弯曲菌。
总体而言,结果突出了弯曲菌属种间和种内广泛的代谢多样性。此外,获得的氧化底物动力学数据可能会改进该生物体的分离程序。