首页> 外文期刊>Journal of the American Chemical Society >Mechanism of Glycan Receptor Recognition and Specificity Switch for Avian, Swine, and Human Adapted Influenza Virus Hemagglutinins: A Molecular Dynamics Perspective
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Mechanism of Glycan Receptor Recognition and Specificity Switch for Avian, Swine, and Human Adapted Influenza Virus Hemagglutinins: A Molecular Dynamics Perspective

机译:禽,猪和人类适应的流感病毒血凝素的聚糖受体识别和特异性转换的机制:分子动力学的角度。

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摘要

Hemagglutinins (HA's) from duck, swine, and human influenza viruses have previously been shown to prefer avian and human glycan receptor analogues with distinct topological profiles, pentasac-charides LSTa (α-2,3 linkage) and LSTc (α-2,6 linkage), in comparative molecular dynamics studies. On the basis of detailed analyses of the dynamic motions of the receptor binding domains (RBDs) and interaction energy profiles with individual glycan residues, we have identified ~30 residue positions in the RBD that present distinct profiles with the receptor analogues. Glycan binding constrained the conformational space sampling by the HA. Electrostatic steering appeared to play a key role in glycan binding specificity. The complex dynamic behaviors of the major SSE and trimeric interfaces with or without bound glycans suggested that networks of interactions might account for species specificity in these low affinity and high avidity (multivalent) interactions between different HA and glycans. Contact frequency, energetic decomposition, and H-bond analyses revealed species-specific differences in HA-glycan interaction profiles, not readily discernible from crystal structures alone. Interaction energy profiles indicated that mutation events at the set of residues such as 145, 156, 158, and 222 would favor human or avian receptor analogues, often through interactions with distal asialo-residues. These results correlate well with existing experimental evidence, and suggest new opportunities for simulation-based vaccine and drug development.
机译:先前已证明,来自鸭,猪和人流感病毒的血凝素(HA)偏爱具有独特拓扑结构的禽和人聚糖受体类似物,五糖-碳酰胺LSTa(α-2,3连锁)和LSTc(α-2,6链接),在比较分子动力学研究中。在对受体结合域(RBDs)的动态运动以及与单个聚糖残基的相互作用能谱进行详细分析的基础上,我们确定了RBD中约30个残基位置,它们与受体类似物呈现出不同的谱图。聚糖结合限制了HA的构象空间采样。静电操纵似乎在聚糖结合特异性中起关键作用。具有或不具有结合聚糖的主要SSE和三聚体界面的复杂动力学行为表明,相互作用网络可能解释了不同HA和聚糖之间的这些低亲和力和高亲合力(多价)相互作用中的物种特异性。接触频率,高能分解和氢键分析揭示了HA-聚糖相互作用谱中物种特异性的差异,仅凭晶体结构不易分辨。相互作用能谱表明,残基集合(例如145、156、158和222)处的突变事件通常会通过与远侧唾液酸残基的相互作用来促进人类或禽类受体类似物的产生。这些结果与现有的实验证据很好地相关,并为基于模拟的疫苗和药物开发提供了新的机会。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2009年第47期|17430-17442|共13页
  • 作者单位

    Maui High Performance Computing Center, Kihei, Maui, Hawaii 96753;

    National Biomedical Computation Resource, University of California-San Diego, La Jolla, California 92093-0505;

    Howard Hughes Medical Institute, University of California-San Diego, La Jolla, California 92093-0365;

    Department of Chemistry and Biochemistry and NSF Center for Theoretical Biological Physics (CTBP), University of California-San Diego, La Jolla, California 92093-0365;

    National Biomedical Computation Resource, University of California-San Diego, La Jolla, California 92093-0505;

    National Biomedical Computation Resource, University of California-San Diego, La Jolla, California 92093-0505;

    Department of Microbiology, University of Hawaii at Manoa, 2538 McCarthy Mall, Snyder 111, Honolulu, Hawaii 96822;

    National Biomedical Computation Resource, University of California-San Diego, La Jolla, California 92093-0505 Department of Pharmacology, University of California-San Diego, La Jolla, California Department of Chemistry and Biochemistry and NSF Center for Theoretical Biological Physics (CTBP), University of California-San Diego, La Jolla, California 92093-0365 Department of Pharmacology, University of California-San Diego, La Jolla, California;

    National Biomedical Computation Resource, University of California-San Diego, La Jolla, California 92093-0505;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:17:30

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