Ronimus RS, Morgan HW, Ding YR
Thermophile Research Unit, Department of Biological Sciences, University of Waikato, Private Bag 3105, Hamilton, New Zealand.
Arch Microbiol. 1999 Dec;172(6):401-6. doi: 10.1007/s002030050777.
The subtype of phosphofructokinase activity, either ATP-, ADP- or pyrophosphate-dependent, present in members of three genera from the Spirochaetales was investigated. The individual species/strains examined included Spirochaeta alkalica, S. asiatica, S. halophila, S. isovalerica, S. litoralis, S. zuelzerae, S. thermophila, two thermophilic spirochetes, Treponema bryantii, T. denticola, paragraph signT. pectinovorum, Leptospira biflexa and L. interrogans. All of the Spirochaeta strains, regardless of their phenotype, possessed primarily a pyrophosphate-dependent phosphofructokinase. In contrast, T. bryantii, T. denticola and L. biflexa had predominantly an ATP-dependent activity, whereas no activity was detected in T. pectinovorum or paragraph signL. interrogans. The results suggest that pyrophosphate-dependent phosphofructokinase activity may be a reliable phenotypic marker for the genus Spirochaeta and that there are potentially interesting differences in how the catabolism of saccharides is controlled among members of genera within the Spirochaetales. The pyrophosphate-dependent phosphofructokinase from S. thermophila strain RI 19.B1 was purified (303-fold) to homogeneity and biochemically characterised. The S. thermophila enzyme displayed hyperbolic kinetics with respect to both the forward and reverse cosubstrates and was not significantly affected by traditional activators or inhibitors of phosphofructokinase. The biochemical characterisation represents the first spirochete phosphofructokinase to be described.
对螺旋体目三个属的成员中存在的磷酸果糖激酶活性亚型(即依赖ATP、ADP或焦磷酸的亚型)进行了研究。所检测的各个物种/菌株包括碱螺旋体、亚洲螺旋体、嗜盐螺旋体、异戊酸螺旋体、滨海螺旋体、祖氏螺旋体、嗜热螺旋体、两种嗜热螺旋体、布氏密螺旋体、齿垢密螺旋体、果胶密螺旋体、双曲钩端螺旋体和问号钩端螺旋体。所有螺旋体菌株,无论其表型如何,主要都具有依赖焦磷酸的磷酸果糖激酶。相比之下,布氏密螺旋体、齿垢密螺旋体和双曲钩端螺旋体主要具有依赖ATP的活性,而在果胶密螺旋体或问号钩端螺旋体中未检测到活性。结果表明,依赖焦磷酸的磷酸果糖激酶活性可能是螺旋体属的一个可靠表型标记,并且在螺旋体目各属成员中,糖类分解代谢的控制方式可能存在有趣的差异。对嗜热螺旋体菌株RI 19.B1的依赖焦磷酸的磷酸果糖激酶进行了纯化(303倍),使其达到同质,并进行了生化特性分析。嗜热螺旋体酶对正向和反向共底物均表现出双曲线动力学,并且不受磷酸果糖激酶传统激活剂或抑制剂的显著影响。该生化特性分析代表了首个被描述的螺旋体磷酸果糖激酶。