Smulevich G, Mantini A R, English A M, Mauro J M
Dipartimento di Chimica, Universitá di Firenze, Italy.
Biochemistry. 1989 Jun 13;28(12):5058-64. doi: 10.1021/bi00438a024.
The high-frequency resonance Raman spectra of FeIII yeast native cytochrome c peroxidase (CCP) and five of its mutants [CCP(MI), Phe-51, Leu-48, Lys-48, Asn-235, and Phe-191] were recorded in phosphate buffer, pH 7.0, and in glycerol/phosphate mixtures at 295 and 10 K. Glycerol induces heme coordination changes in some of the CCP mutants at room temperature. It apparently weakens the binding of the Fe atom to ligands in the distal heme cavity and drives the heme toward the 5-coordinate, high-spin state. At 10 K, native CCP and all the mutants (except Phe-51 which remains 6-coordinate, high-spin) show various distributions of spin and coordination states which differ from those observed at 295 K. Upon cooling in phosphate buffer, pH 7, and to a much lesser extent in 66% glycerol/phosphate, an internal strong-field ligand is coordinated to the Fe. A likely candidate is H2O-595, which could become a strong-field ligand on H-bonding and/or proton transfer to H2O-648, and/or the distal His-52. However, distal His-52 itself cannot be ruled out as the coordinating ligand considering that the Phe-51 mutant, which binds H2O-595 at room temperature, does not show a large 6-coordinate, low-spin component at 10 K like the other mutants. These results clearly indicate that the Fe coordination in CCP and its mutants is sensitive to both temperature and solvent composition.
在pH 7.0的磷酸盐缓冲液以及甘油/磷酸盐混合物中,于295 K和10 K温度下记录了FeIII酵母天然细胞色素c过氧化物酶(CCP)及其五个突变体[CCP(MI)、苯丙氨酸-51、亮氨酸-48、赖氨酸-48、天冬酰胺-235和苯丙氨酸-191]的高频共振拉曼光谱。甘油在室温下会引起CCP某些突变体中血红素配位变化。它明显削弱了远端血红素腔内铁原子与配体的结合,并促使血红素向五配位、高自旋状态转变。在10 K时,天然CCP和所有突变体(除了保持六配位、高自旋的苯丙氨酸-51)显示出与295 K时观察到的不同的自旋和配位状态分布。在pH 7的磷酸盐缓冲液中冷却时,以及在66%甘油/磷酸盐中冷却程度较小的情况下,一个内部强场配体与铁配位。一个可能的候选者是H2O-595,它可能通过氢键作用和/或质子转移至H2O-648和/或远端组氨酸-52而成为强场配体。然而,考虑到在室温下结合H2O-595的苯丙氨酸-51突变体在10 K时不像其他突变体那样显示出大的六配位、低自旋成分,远端组氨酸-52本身作为配位配体也不能排除。这些结果清楚地表明,CCP及其突变体中的铁配位对温度和溶剂组成均敏感。