Viola F, Aime S, Coletta M, Desideri A, Fasano M, Paoletti S, Tarricone C, Ascenzi P
FV. Institute of Applied Pharmaceutical Chemistry, University of Turin, Italy.
J Inorg Biochem. 1996 May 15;62(3):213-22. doi: 10.1016/0162-0134(95)00155-7.
Azide, cyanide, fluoride, imidazole, and pyridine binding to ferric and ferrous native horse heart cytochrome c and to its carboxymethylated derivative has been investigated, from the thermodynamic viewpoint, at pH 7.5 and 25.0 degrees C. Ligand affinity for ferric and ferrous carboxymethylated cytochrome c is higher by about 30- and 400-fold, respectively, than that observed for the native protein. The results here reported: (i) allow the estimation, for the first time, of the ligand-independent free energy associated with the heme-iron sixth coordination bond in ferric and ferrous native cytochrome c, which turns out to be +8.4 kJ mol-1 and +14.6 kJ mol-1, at 25.0 degrees C, respectively, and (ii) suggest an interplay between redox, structural, ligand binding, and recognition properties of cytochrome c.
从热力学角度,在pH 7.5和25.0℃条件下,研究了叠氮化物、氰化物、氟化物、咪唑和吡啶与天然马心细胞色素c的三价铁和二价铁形式及其羧甲基化衍生物的结合情况。配体对羧甲基化三价铁和二价铁细胞色素c的亲和力分别比天然蛋白质高约30倍和400倍。本文报道的结果:(i)首次估算了天然三价铁和二价铁细胞色素c中与血红素铁第六配位键相关的不依赖配体的自由能,在25.0℃时分别为+8.4 kJ mol-1和+14.6 kJ mol-1,(ii)表明细胞色素c的氧化还原、结构、配体结合和识别特性之间存在相互作用。