Wagner R, Andreesen J R
Arch Microbiol. 1977 Sep 28;114(3):219-24. doi: 10.1007/BF00446865.
The formate dehydrogenases of Clostridium acidiurici and of C. cylindrosporum coupled the oxidation of formate with the reduction of viologen dyes. The basal activity level was about 0.85 mumoles/min X mg of protein for both species. The level of formate dehydrogenase of C. acidiurici increased 12-fold when 10(-7) M tungstate and selenite were present during growth. Molybdate exerted no effect. On the other hand, molybdate and selenite were required to increase the formate dehydrogenase of C. cylindrosporum, and tungstate exhibitedan antagonistic effect in this organism. Growth on hypoxanthine generally depended on the addition of bicarbonate. Supplementation with tungstate and selenite accellerated growth of C. acidiurici and increased again the level of formate dehydrogenase. The addition of both, molybdate and selenite was necessary to initiate growth of C. cyclindrosporum and to form an active formate dehydrogenase. The differences in the requirement for metal ion supplementation to form high levels of formate dehydrogenase and their involvement in hypoxanthine degradation can be used to differentiate between C. acidiurici and C. cylindrosporum.
尿酸梭菌和柱状芽孢梭菌的甲酸脱氢酶可将甲酸的氧化与紫精染料的还原偶联起来。这两种菌的基础活性水平均约为0.85微摩尔/分钟×毫克蛋白。在生长过程中存在10⁻⁷ M钨酸盐和亚硒酸盐时,尿酸梭菌的甲酸脱氢酶水平增加了12倍。钼酸盐无作用。另一方面,柱状芽孢梭菌的甲酸脱氢酶增加需要钼酸盐和亚硒酸盐,而钨酸盐对该菌表现出拮抗作用。在次黄嘌呤上生长通常依赖于添加碳酸氢盐。补充钨酸盐和亚硒酸盐可加速尿酸梭菌的生长,并再次提高甲酸脱氢酶水平。同时添加钼酸盐和亚硒酸盐对于启动柱状芽孢梭菌的生长以及形成活性甲酸脱氢酶是必要的。形成高水平甲酸脱氢酶所需的金属离子补充要求的差异及其在次黄嘌呤降解中的作用可用于区分尿酸梭菌和柱状芽孢梭菌。