Nagata K, Tsukita S, Tamura T, Sone N
Department of Bacteriology, Hyogo College of Medicine, Nishinomiya, Japan.
Microbiology (Reading). 1996 Jul;142 ( Pt 7):1757-63. doi: 10.1099/13500872-142-7-1757.
A Helicobacter pylori membrane fraction oxidized yeast and equine cytochrome c, and N,N,N',N'-tetramethyl-p-phenylenediamine (TMPD). When ascorbate was used as reductant, the Vmax and apparent Km values were 612 nmol electron min-1 (mg protein)-1 and 14 microM for yeast, and 419 nmol electron min-1 (mg protein)-1 and 19 microM for equine cytochrome c, respectively. For TMPD oxidation, the Vmax and Km values were 640 nmol electron min-1 (mg protein)-1 and 182 microM, respectively. These oxidase activities showed a high affinity for oxygen. Inhibition of both cytochrome-c and TMPD oxidase activities by 50% was caused by about 4 microM cyanide and about 0.5 mM azide. Redox difference spectra of the membrane solubilized with Triton X-100 showed b- or c-type cytochromes but not aa3-type cytochromes. c-type and a part of some b-type cytochromes were reduced with ascorbate plus TMPD. A CO difference spectrum revealed that protohaem, but not an aa3-type cytochrome, may be interacting with CO/oxygen. Only protohaem was detected in the haem fraction extracted from the membrane. Three polypeptides (60, 38 and 29 kDa) were found to be bearing haem c after SDS-PAGE of the membrane. From these results, it was suggested that the cbb3-type cytochrome-c oxidase, having a haem-copper binuclear centre like the cytochrome aa3-type oxidase, but differing in a few other properties, functions as a terminal oxidase in the respiratory chain of H. pylori.
幽门螺杆菌膜组分可氧化酵母细胞色素c、马细胞色素c以及N,N,N',N'-四甲基对苯二胺(TMPD)。当使用抗坏血酸作为还原剂时,对于酵母细胞色素c,Vmax和表观Km值分别为612 nmol电子·min⁻¹·(mg蛋白)⁻¹和14 μM;对于马细胞色素c,Vmax和表观Km值分别为419 nmol电子·min⁻¹·(mg蛋白)⁻¹和19 μM。对于TMPD氧化,Vmax和Km值分别为640 nmol电子·min⁻¹·(mg蛋白)⁻¹和182 μM。这些氧化酶活性对氧气表现出高亲和力。约4 μM氰化物和约0.5 mM叠氮化物可使细胞色素c氧化酶和TMPD氧化酶活性均受到50%的抑制。用Triton X - 100溶解的膜的氧化还原差光谱显示存在b型或c型细胞色素,但不存在aa3型细胞色素。c型和部分b型细胞色素可被抗坏血酸加TMPD还原。一氧化碳差光谱显示原卟啉而非aa3型细胞色素可能与一氧化碳/氧气相互作用。从膜中提取的血红素组分中仅检测到原卟啉。对膜进行SDS - PAGE后发现三种多肽(60、38和29 kDa)携带血红素c。从这些结果推测,cbb3型细胞色素c氧化酶具有类似于细胞色素aa3型氧化酶的血红素 - 铜双核中心,但在其他一些性质上有所不同,它在幽门螺杆菌的呼吸链中作为末端氧化酶发挥作用。