Woodson Jesse D, Escalante-Semerena Jorge C
144A Enzyme Institute, 1710 University Avenue, Madison, WI 53726-4087.
J Bacteriol. 2006 Jun;188(12):4227-35. doi: 10.1128/JB.00227-06.
Here we report the initial biochemical characterization of the bifunctional alpha-ribazole-P (alpha-RP) phosphatase, adenosylcobinamide (AdoCbi) amidohydrolase CbiS enzyme from the hyperthermophilic methanogenic archaeon Methanopyrus kandleri AV19. The cbiS gene encodes a 39-kDa protein with two distinct segments, one of which is homologous to the AdoCbi amidohydrolase (CbiZ, EC 3.5.1.90) enzyme and the other of which is homologous to the recently discovered archaeal alpha-RP phosphatase (CobZ, EC 3.1.3.73) enzyme. CbiS function restored AdoCbi salvaging and alpha-RP phosphatase activity in strains of the bacterium Salmonella enterica where either step was blocked. The two halves of the cbiS genes retained their function in vivo when they were cloned separately. The CbiS enzyme was overproduced in Escherichia coli and was isolated to >95% homogeneity. High-performance liquid chromatography, UV-visible spectroscopy, and mass spectroscopy established alpha-ribazole and cobyric acid as the products of the phosphatase and amidohydrolase reactions, respectively. Reasons why the CbiZ and CobZ enzymes are fused in some archaea are discussed.
在此,我们报道了来自嗜热产甲烷古菌坎氏甲烷嗜热菌AV19的双功能α-核唑-P(α-RP)磷酸酶、腺苷钴胺酰胺(AdoCbi)酰胺水解酶CbiS的初步生化特性。cbiS基因编码一种39 kDa的蛋白质,具有两个不同的区段,其中一个区段与AdoCbi酰胺水解酶(CbiZ,EC 3.5.1.90)同源,另一个区段与最近发现的古菌α-RP磷酸酶(CobZ,EC 3.1.3.73)同源。CbiS的功能恢复了肠道沙门氏菌菌株中AdoCbi挽救途径和α-RP磷酸酶活性,其中任何一个步骤都被阻断。当cbiS基因的两个半部分分别克隆时,它们在体内保留了其功能。CbiS酶在大肠杆菌中过量表达,并以>95%的纯度分离得到。高效液相色谱、紫外可见光谱和质谱分别确定了α-核唑和钴胺酸为磷酸酶和酰胺水解酶反应的产物。文中讨论了CbiZ和CobZ酶在某些古菌中融合的原因。