Nagai Masako, Kobayashi Chika, Nagai Yukifumi, Imai Kiyohiro, Mizusawa Naoki, Sakurai Hiroshi, Neya Saburo, Kayanuma Megumi, Shoji Mitsuo, Nagatomo Shigenori
Research Center for Micro-Nano Technology, Hosei University , Koganei, Tokyo 184-0003, Japan.
J Phys Chem B. 2015 Jan 29;119(4):1275-87. doi: 10.1021/jp5086203. Epub 2015 Jan 7.
Incorporation of the heme into globin induces a prominent circular dichroism (CD) band in the Soret region. The appearance of heme optical activity is widely believed to arise from the interaction between the heme and aromatic residues of the globin. However, hemoglobin (Hb) containing the reversed heme exhibits a CD spectrum obviously different from that of native Hb, indicating that the interactions of heme side chains with globin contribute to the appearance of heme optical activity. We examined this possibility by comparing CD spectra of native myoglobin (Mb) and those of Mb reconstituted with synthetic hemes lacking vinyl and/or propionate. Replacement of 2,4-vinyl groups with methyl induced moderate changes. In contrast, replacement of 6,7-propionate groups with carboxylate resulted in complete disappearance of the positive Soret CD band. To get theoretical basis for the contributions of 6,7-side chains on the band, we investigated the CD spectra at a time-dependent density functional theory level. In the antiparallel conformation of the 6,7-side chains, the rotational strengths were calculated to be positive, on the other hand in the parallel conformation to be negative. We also found that the weak Soret CD band in 2,4-dimethyl-6,7-dicarboxyheme can be explained by canceling between different carboxyl conformers.
血红素掺入珠蛋白会在索雷特区域诱导出一条明显的圆二色性(CD)带。人们普遍认为血红素光学活性的出现源于血红素与珠蛋白芳香族残基之间的相互作用。然而,含有反向血红素的血红蛋白(Hb)呈现出与天然Hb明显不同的CD光谱,这表明血红素侧链与珠蛋白的相互作用有助于血红素光学活性的出现。我们通过比较天然肌红蛋白(Mb)和用缺乏乙烯基和/或丙酸酯的合成血红素重构的Mb的CD光谱来研究这种可能性。用甲基取代2,4-乙烯基会引起适度变化。相反,用羧酸盐取代6,7-丙酸酯基团会导致索雷特CD正带完全消失。为了获得6,7-侧链对该谱带贡献的理论基础,我们在含时密度泛函理论水平上研究了CD光谱。在6,7-侧链的反平行构象中,计算出的旋转强度为正,而在平行构象中为负。我们还发现,2,4-二甲基-6,7-二羧基血红素中微弱的索雷特CD带可以通过不同羧基构象之间的抵消来解释。