Mozzarelli A, Bettati S, Rivetti C, Rossi G L, Colotti G, Chiancone E
Istituto di Scienze Biochimiche, Università di Parma, 43100 Parma, Italy.
J Biol Chem. 1996 Feb 16;271(7):3627-32. doi: 10.1074/jbc.271.7.3627.
Oxygen binding to homodimeric Scapharca inaequivalvis hemoglobin (HbI) crystals has been investigated by single-crystal polarized absorption microspectrophotometry. The saturation curve, characterized by a Hill coefficient nH = 1.45 and an oxygen pressure at half saturation p50 = 4.8 torr, at 15 degrees C, shows that HbI in the crystalline state retains positive cooperativity in ligand binding. This finding will permit the correlation of the oxygen-linked conformational changes in the crystal with the expression of cooperativity. Polarized absorption spectra of deoxy-HbI, oxy-HbI, and oxidized HbI crystals indicate that oxygenation does not induce heme reorientation, whereas oxidation does. Lattice interactions prevent the dissociation of oxidized dimers that occurs in solution and stabilize an equilibrium distribution of pentacoordinate and hexacoordinate high spin species.
通过单晶偏振吸收显微分光光度法研究了氧气与不等蛤血红蛋白(HbI)晶体的结合情况。在15摄氏度下,饱和曲线的特征为希尔系数nH = 1.45,半饱和氧压p50 = 4.8托,表明结晶态的HbI在配体结合中保持正协同性。这一发现将使晶体中氧连接的构象变化与协同性的表现相关联。脱氧-HbI、氧合-HbI和氧化HbI晶体的偏振吸收光谱表明,氧合不会引起血红素重排,而氧化会。晶格相互作用阻止了溶液中发生的氧化二聚体的解离,并稳定了五配位和六配位高自旋物种的平衡分布。