Helmholtz Centre for Environmental Research-UFZ, Department of Isotope Biogeochemistry, Leipzig, Germany.
J Bacteriol. 2013 Oct;195(20):4660-7. doi: 10.1128/JB.00477-13. Epub 2013 Aug 9.
We studied the benzylsuccinate synthase (Bss) reaction mechanism with respect to the hydrogen-carbon bond cleavage at the methyl group of toluene by using different stable isotope tools. Λ values (slopes of linear regression curves for carbon and hydrogen discrimination) for two-dimensional compound-specific stable isotope analysis (2D-CSIA) of toluene activation by Bss-containing cell extracts (in vitro studies) were found to be similar to previously reported data from analogous experiments with whole cells (in vivo studies), proving that Λ values generated by whole cells are caused by Bss catalysis. The Bss enzymes of facultative anaerobic bacteria produced smaller Λ values than those of obligate anaerobes. In addition, a partial exchange of a single deuterium atom in benzylsuccinate with hydrogen was observed in experiments with deuterium-labeled toluene. In this study, the Bss enzymes of the tested facultative anaerobes showed 3- to 8-fold higher exchange probabilities than those for the enzymes of the tested obligate anaerobic bacteria. The phylogeny of the Bss variants, determined by sequence analyses of BssA, the gene product corresponding to the α subunit of Bss, correlated with the observed differences in Λ values and hydrogen exchange probabilities. In conclusion, our results suggest subtle differences in the reaction mechanisms of Bss isoenzymes of facultative and obligate anaerobes and show that the putative isoenzymes can be differentiated by 2D-CSIA.
我们使用不同的稳定同位素工具研究了苄基琥珀酸合酶(Bss)对甲苯甲基氢-碳键断裂的反应机制。通过含有 Bss 的细胞提取物(体外研究)对甲苯激活的二维化合物特异性稳定同位素分析(2D-CSIA)的 Λ 值(碳和氢区分的线性回归曲线的斜率)与先前用类似的整体细胞实验(体内研究)报告的数据相似,证明了由全细胞产生的 Λ 值是由 Bss 催化引起的。兼性厌氧菌的 Bss 酶产生的 Λ 值小于专性厌氧菌。此外,在氘标记甲苯的实验中观察到苄基琥珀酸中单个氘原子与氢的部分交换。在这项研究中,测试的兼性厌氧菌的 Bss 酶比测试的专性厌氧菌的 Bss 酶具有高 3 至 8 倍的交换概率。通过 BssA(对应于 Bss 的α亚基的基因产物)的序列分析确定的 Bss 变体的系统发育与观察到的 Λ 值和氢交换概率的差异相关。总之,我们的结果表明,兼性和专性厌氧菌的 Bss 同工酶的反应机制存在细微差异,并表明可以通过 2D-CSIA 区分假定的同工酶。