Hermuth Kerstin, Leuthner Birgitta, Heider Johann
Mikrobiologie, Institut für Biologie II, Universität Freiburg, Schänzlestrasse 1, 79104 Freiburg, Germany.
Arch Microbiol. 2002 Feb;177(2):132-8. doi: 10.1007/s00203-001-0375-1. Epub 2001 Dec 1.
The first step in anaerobic toluene degradation is the addition of a fumarate cosubstrate to the methyl group of toluene, as catalyzed by the glycyl radical enzyme benzylsuccinate synthase. The bssDCAB genes code for the subunits of benzylsuccinate synthase (BssA, B and C) and an additional enzyme implicated in activating the enzyme by introducing the glycyl radical (BssD). Quantitation of the amounts of benzylsuccinate synthase and activating enzyme showed that both proteins are only synthesized in toluene-grown cells, and that the activating enzyme is present in about 14-fold lower amounts. Two mRNA species of the bss gene cluster were identified, one beginning in front of bssD, and a second in front of bssC. Only the first mRNA 5'-end correlates with a toluene-induced promoter, which is similar to that preceding the bbs operon coding for the further enzymes of toluene catabolism of the same strain. The second mapped 5'-end appears to be generated by endonucleolytic processing. The mRNA segment containing the bssD gene is very short-lived, while that containing the bssCAB genes is more stable. The RNA stability data are consistent with the observed amounts of encoded gene products. Furthermore, the previously known bssDCAB genes are apparently cotranscribed with a fifth gene ( bssE) whose product may function as a putative ATP-dependent chaperone for assembly and/or activation of benzylsuccinate synthase.
厌氧甲苯降解的第一步是在富马酸酯共底物的作用下,将其添加到甲苯的甲基上,这一过程由甘氨酰自由基酶苄基琥珀酸合酶催化。bssDCAB基因编码苄基琥珀酸合酶的亚基(BssA、B和C)以及另一种通过引入甘氨酰自由基来激活该酶的酶(BssD)。对苄基琥珀酸合酶和激活酶的定量分析表明,这两种蛋白质仅在以甲苯为生长底物的细胞中合成,且激活酶的含量约低14倍。鉴定出bss基因簇的两种mRNA,一种起始于bssD之前,另一种起始于bssC之前。只有第一个mRNA的5'端与甲苯诱导型启动子相关,该启动子与编码同一菌株甲苯分解代谢后续酶的bbs操纵子之前的启动子相似。第二个定位的5'端似乎是由核酸内切加工产生的。包含bssD基因的mRNA片段寿命很短,而包含bssCAB基因的片段则更稳定。RNA稳定性数据与观察到的编码基因产物的量一致。此外,先前已知的bssDCAB基因显然与第五个基因(bssE)共转录,其产物可能作为假定的ATP依赖性伴侣蛋白,用于苄基琥珀酸合酶的组装和/或激活。