Bhandare Reena, Calabro Mark, Coschigano Peter W
Department of Biological Sciences, Ohio University Athens, OH 45701-2979, USA.
Biochem Biophys Res Commun. 2006 Aug 4;346(3):992-8. doi: 10.1016/j.bbrc.2006.05.199. Epub 2006 Jun 9.
Benzylsuccinate synthase, encoded by the tutF, tutD, and tutG genes of Thauera aromatica strain T1, is responsible for the first step of anaerobic toluene metabolism. Previous work has shown that these genes are part of the tutE tutFDGH gene cluster and strains carrying a mutation in the tutE, tutF, tutD, or tutG genes are unable to metabolize toluene. In this study, we performed site-directed mutagenesis of the tutE, tutF, and tutG genes and determined that the cysteines at position 72 and 79 of TutE are likely to be critical for the radical activation of benzylsuccinate synthase, while the cysteine alanine at positions 9 and 10 of TutF, and the cysteine at position 29 of TutG are also essential for toluene metabolism. Additionally, we report that the tutH gene is necessary for toluene metabolism and the glycine lysine serine (part of the putative ATP/GTP binding domain) at positions 52-54 of the TutH protein is essential for toluene metabolism.
由芳香硫杆菌T1菌株的tutF、tutD和tutG基因编码的苄基琥珀酸合酶负责厌氧甲苯代谢的第一步。先前的研究表明,这些基因是tutE tutFDGH基因簇的一部分,携带tutE、tutF、tutD或tutG基因突变的菌株无法代谢甲苯。在本研究中,我们对tutE、tutF和tutG基因进行了定点诱变,确定TutE第72位和第79位的半胱氨酸可能对苄基琥珀酸合酶的自由基激活至关重要,而TutF第9位和第10位的半胱氨酸-丙氨酸以及TutG第29位的半胱氨酸对甲苯代谢也必不可少。此外,我们报告tutH基因对甲苯代谢是必需的,TutH蛋白第52-54位的甘氨酸-赖氨酸-丝氨酸(假定的ATP/GTP结合域的一部分)对甲苯代谢至关重要。