Fernandez-Alberti S, Bacelo D E, Binning R C, Echave J, Chergui M, Lopez-Garriga J
Universidad Nacional de Quilmes, 1876 Bernal, Argentina.
Biophys J. 2006 Sep 1;91(5):1698-709. doi: 10.1529/biophysj.106.081646. Epub 2006 Jun 16.
The dynamics of Hemoglobin I (HbI) from the clam Lucina pectinata, from wild-type sperm whale (SW) myoglobin, and from the L29F/H64Q/V68F triple mutant of SW, both unligated and bound to hydrogen sulfide (H2S), have been studied in molecular dynamics simulations. Features that account for differences in H2S affinity among the three have been examined. Our results verify the existence of an unusual heme rocking motion in unligated HbI that can promote the entrance of large ligands such as H2S. The FQF-mutant partially reproduces the amplitude and relative orientation of the motion of HbI's heme group. Therefore, besides introducing favorable electrostatic interactions with H2S, the three mutations in the distal pocket change the dynamic properties of the heme group. The active-site residues Gln-64(E7), Phe-43(CD1), and His-93(F8) are also shown to be more flexible in unligated HbI than in FQF-mutant and SW. Further contributions to H2S affinity come from differences in hydrogen bonding between the heme propionate groups and nearby amino acid residues.
在分子动力学模拟中,研究了来自栉孔扇贝的血红蛋白I(HbI)、野生型抹香鲸(SW)肌红蛋白以及SW的L29F/H64Q/V68F三重突变体在未结合和结合硫化氢(H₂S)时的动力学。研究了导致这三者之间H₂S亲和力差异的特征。我们的结果证实,未结合的HbI中存在一种不寻常的血红素摇摆运动,这种运动可以促进H₂S等大配体的进入。FQF突变体部分再现了HbI血红素基团运动的幅度和相对取向。因此,除了引入与H₂S有利的静电相互作用外,远端口袋中的三个突变还改变了血红素基团的动力学性质。活性位点残基Gln-64(E7)、Phe-43(CD1)和His-93(F8)在未结合的HbI中也比在FQF突变体和SW中更具灵活性。血红素丙酸基团与附近氨基酸残基之间氢键的差异对H₂S亲和力有进一步贡献。