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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Dynamic features of carboxy cytoglobin distal mutants investigated by molecular dynamics simulations
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Dynamic features of carboxy cytoglobin distal mutants investigated by molecular dynamics simulations

机译:分子动力学模拟研究羧基细胞球蛋白远端突变体的动态特征

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Cytoglobin (Cgb) is a member of hemoprotein family with roles in NO metabolism, fibrosis, and tumourigenesis. Similar to other hemoproteins, Cgb structure and functions are markedly influenced by distal key residues. The sixth ligand His(81) (E7) is crucial to exogenous ligand binding, heme pocket conformation, and physiological roles of this protein. However, the effects of other key residues on heme pocket and protein biological functions are not well known. In this work, a molecular dynamics (MD) simulation study of two single mutants in CO-ligated Cgb (L46FCgbCO and L46VCgbCO) and two double mutants (L46FH81QCgbCO and L46VH81QCgbCO) was conducted to explore the effects of the key distal residues Leu(46)(B10) and His(81)(E7) on Cgb structure and functions. Results indicated that the distal mutation of B10 and E7 affected CgbCO dynamic properties on loop region fluctuation, internal cavity rearrangement, and heme motion. The distal conformation change was reflected by the distal key residues Gln(62) (CD3) and Arg(84)(E10). The hydrogen bond between heme propionates with CD3 or E10 residues were evidently influenced by B10/E7 mutation. Furthermore, heme pocket rearrangement was also observed based on the distal pocket volume and occurrence rate of inner cavities. The mutual effects of B10 and E7 residues on protein conformational rearrangement and other dynamic features were expressed in current MD studies of CgbCO and its distal mutants, suggesting their crucial role in heme pocket stabilization, ligand binding, and Cgb biological functions.
机译:细胞球蛋白(Cgb)是血蛋白家族的一员,在NO代谢,纤维化和肿瘤发生中起作用。与其他血蛋白类似,Cgb的结构和功能受远端关键残基的影响明显。第六个配体His(81)(E7)对这种蛋白的外源配体结合,血红素口袋构象和生理作用至关重要。然而,其他关键残基对血红素囊袋和蛋白质生物学功能的影响尚不清楚。在这项工作中,对CO连接的Cgb中的两个单个突变体(L46FCgbCO和L46VCgbCO)和两个双重突变体(L46FH81QCgbCO和L46VH81QCgbCO)进行了分子动力学(MD)模拟研究,以探索关键远端残基Leu(46)的作用。 (B10)和His(81)(E7)关于Cgb的结构和功能。结果表明,B10和E7的远侧突变影响CgbCO动力学特性,涉及环区域波动,内腔重排和血红素运动。远端构象变化由远端关键残基Gln(62)(CD3)和Arg(84)(E10)反映出来。带有CD3或E10残基的丙酸血红素之间的氢键显然受到B10 / E7突变的影响。此外,还根据远端袋的体积和内腔的发生率观察到血红素袋的重新排列。 B10和E7残基对蛋白质构象重排和其他动态特征的相互影响已在当前对CgbCO及其远端突变体的MD研究中得到了表达,表明它们在血红素囊袋稳定,配体结合和Cgb生物学功能中至关重要。

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