Aswell J E, Haydon A H, Turner H R, Dawkins C A, Arceneaux J E
J Bacteriol. 1977 Apr;130(1):173-80. doi: 10.1128/jb.130.1.173-180.1977.
Membrane vesicles of Bacillus megaterium strains SK11 and Ard1 bound the ferrischizokinen and ferriferrioxamine B siderhores (iron transport cofactors). An approximately equimolar uptake of both labels of [3H, 59Fe]ferrischizokinen indicated binding of the intact chelate. Binding reached equilibrium in 2 to 5 min, was temperature independent, and was unaltered by the addition of several energy sources. A 91% dissociation of bound [Fe]ferrischizokinen was achieved in 60 s by the addition of excess ferrischizokinen. Ferriaerobactin, a siderophore which is structurally related to ferrischizokinen, caused no detectable release of bound [59Fe]ferrischizokinen. Of several other ferrigydroxamates tested, only ferriferrichrome A achieved the release (11%) of [Fe]ferrischizokinen. Rapid dissociation (92%) of bound [59Fe]ferriferrioxamine B by the addition of ferriferrioxamine B was observed, and a 67% release of [59Fe]ferriferrioxamine B was caused by ferriA2265, its structural relative. Ferrischizokinen, ferriferrichrome A, and ferrirhodotorulic acid produced a 6, 25, and 29% dissociation, respectively, of [59Fe]ferriferrioxamine B; ferriaerobactin caused no dissociation. [59Fe]ferriaerobactin was bound by the membranes, but its dissociation was not effected by unlabeled ferriaerobactin, suggesting no specific receptors for this chelate. The respective binding affinity constants and maximal binding capacities of membrane vesicles of strain SK11 were 2 x 10(7) M-1 and 280 pmol per mg of protein for ferrischizokinen and 7 x 10(7) M-1 and 37 pmol per mg of protein for ferriferrioxamine B. These values in strain Ard1 were, respectively, 1.4 x 10(7) M-1 and 186 pmol per mg of protein for ferrischizokinen and 11 x 10(7) M-1 and 23 pmol per mg of protein for ferriferrioxamine B. Separate, specific binding sites (receptors) for ferrischizokinen and ferriferrioxamine B exist on the vesicles. The ferrischizokinen receptors have a lower affinity but a higher binding capacity (eightfold) than that shown by the ferriferrioxamine B receptor. These receptors may be components of independent transport systems.
巨大芽孢杆菌菌株SK11和Ard1的膜囊泡能结合铁裂殖菌素和铁铁氧肟酸B铁载体(铁转运辅助因子)。[3H, 59Fe]铁裂殖菌素两种标记物的摄取量大致等摩尔,表明完整螯合物的结合。结合在2至5分钟内达到平衡,与温度无关,并且添加几种能源后不变。通过添加过量的铁裂殖菌素,在60秒内实现了结合的[Fe]铁裂殖菌素91%的解离。铁气杆菌素是一种与铁裂殖菌素结构相关的铁载体,未引起结合的[59Fe]铁裂殖菌素的可检测释放。在测试的其他几种铁羟肟酸盐中,只有铁铬菌素A实现了[Fe]铁裂殖菌素的释放(11%)。观察到通过添加铁铁氧肟酸B使结合的[59Fe]铁铁氧肟酸B快速解离(92%),其结构相关物铁A2265导致[59Fe]铁铁氧肟酸B释放67%。铁裂殖菌素、铁铬菌素A和铁红酵母酸分别使[59Fe]铁铁氧肟酸B解离6%、25%和29%;铁气杆菌素未引起解离。[59Fe]铁气杆菌素被膜囊泡结合,但其解离不受未标记铁气杆菌素的影响,表明该螯合物没有特异性受体。菌株SK11膜囊泡对铁裂殖菌素的各自结合亲和常数和最大结合容量分别为2×10(7) M-1和每毫克蛋白质280皮摩尔,对铁铁氧肟酸B为7×10(7) M-1和每毫克蛋白质37皮摩尔。菌株Ard1中这些值分别为铁裂殖菌素1.4×10(7) M-1和每毫克蛋白质186皮摩尔,铁铁氧肟酸B为11×10(7) M-1和每毫克蛋白质23皮摩尔。膜囊泡上存在铁裂殖菌素和铁铁氧肟酸B各自独立的特异性结合位点(受体)。铁裂殖菌素受体的亲和力较低,但结合容量比铁铁氧肟酸B受体高八倍。这些受体可能是独立转运系统的组成部分。