Between pH approximately 4 and 10 cobaltocytochrome c (Cocyt-c) gives an electron paramagnetic resonance (EPR) spectrum with g parallel = 2.035, g the perpendicular = 2.223, CoA PARALLEL = 61.4 G, CoA the perpendicular = 49.8 G, NA parallel = 15.3 G, and NA THE PERPENDICULAR = 12.5 G. Comparisons with the EPR spectra of deoxycobaltomyoglobin, deoxycobaltohemoglobin, and model compounds and together with other evidence showed cobaltocytochrome c to have Met-80 and His-18 as its axial ligands. The protons of these ligands are seen as resonances shifted by the ring-current field of the porphyrin in the 300-MHZ 1H nuclear magnetic resonance (NMR) spectra of cobalticytochrome c (Cocyt-c+). The methyl and gamma-methylene protons of Met-80 in this molecule occupy positions with respect to heme c which are somewhat different from those in ferrocytochrome c. The 1H NMR spectra also showed that the methyl groups of Leu-32, Ile-75, Thr-63, thioether bridges, and the porphyrin ring in the cobalt protein are in the same state as in native enzyme; the same is also true for Tyr-59, His-26, and His-33 and also possibly Tyr-67, Tyr-74, and Phe-82. Above pH 11, Cocyt-c is converted to a five-coordinated form having g parallel = 2.026, g the perpendicular = 2.325, CoA parallel = 80 G, CoA the perpendicular approximately 10 G, NA parallel = 17.5 G, and NA the perpendicular not resolved. Below pH 1.0 the EPR spectrum of Cocyt-c is also five-coordinated with g parallel = 2.014, g the perpendicular = 2.359, CoA parallel = 93.8 G, and CoA the perpendicular = 38.8 G. The axial ligands in the alkaline and the acidic forms of Cocyt-c are His-18 and Met-80, respectively. New prominent proton resonance peaks are observed in cobalt-cytochrome c which are either absent or weak in native cytochrome c. These are situated at 3.0, 1.7, and 1.44 ppm, attributable, respectively, to the epsilon-CH2, DELTA-CH2 + beta-CH2, and gamma-CH2 of lysyl residues in random-coil-peptides. From the areas of these peaks, it is estimated that one-two lysyl residues in Cocyt-c have been modified; four-five lysyl residues in Cocyt-c+ have been modified. These alterations of surface charged groups are probably responsible for the lowered reactivity of Cocyt-c with cytochrome oxidase and the lack of reactivity of Cocyt-c+ with several cytochrome reductase systems.

译文

在大约4到10的pH之间,钴细胞色素c (Cocyt-c) 给出了电子顺磁共振 (EPR) 光谱,g平行 = 2.035,g垂直 = 2.223,CoA平行 = 61.4G,CoA垂直 = 49.8G,NA平行 = 15.3G,和NA的垂线 = 12.5G。与脱氧钴氧球蛋白,脱氧钴血红蛋白和模型化合物的EPR光谱进行比较,并与其他证据一起表明,钴细胞色素c具有Met-80和His-18作为其轴向配体。在钴基铬c (Cocyt-c) 的300 MHZ 1H核磁共振 (NMR) 光谱中,这些配体的质子被视为卟啉的环电流场偏移的共振。该分子中Met-80的甲基和 γ-亚甲基质子相对于血红素c占据的位置与铁细胞色素c中的位置有些不同。1H NMR光谱还显示Leu-32的甲基,Ile-75,Thr-63,硫醚桥,钴蛋白中的卟啉环与天然酶中的卟啉环处于相同状态; Tyr-59,His-26和His-33以及Tyr-67,Tyr-74和Phe-82也是如此。在ph11以上,Cocyt-c转化为具有g平行 = 2.026、g垂直 = 2.325、CoA平行 = 80G、CoA垂直约10G、NA平行 = 17.5G、NA垂直未解析的五配位形式。在pH 1.0以下,Cocyt-c的EPR光谱也是五配位的,g平行 = 2.014,g垂直 = 2.359,CoA平行 = 93.8G,CoA垂直 = 38.8G。Cocyt-c的碱性和酸性形式的轴向配体分别为他-18和Met-80。在钴-细胞色素c中观察到新的显著质子共振峰,其在天然细胞色素c中不存在或弱。这些峰位于3.0、1.7和1.44 ppm,分别归因于随机线圈肽中赖氨酰残基的epsilon-CH2、DELTA-CH2 + beta-CH2和gamma-CH2。从这些峰的区域来看,估计Cocyt-c中的一两个赖氨酰残基已被修饰; Cocyt-c中的四个-五个赖氨酰残基已被修饰。表面带电基团的这些变化可能是导致Cocyt-c与细胞色素氧化酶的反应性降低以及Cocyt-c与几种细胞色素还原酶系统缺乏反应性的原因。

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