South African National Bioinformatics Institute, South African Medical Research Council Bioinformatics Unit, University of the Western Cape, Cape Town, South Africa.
PLoS One. 2013 Nov 26;8(11):e80301. doi: 10.1371/journal.pone.0080301. eCollection 2013.
N-linked glycans attached to specific amino acids of the gp120 envelope trimer of a HIV virion can modulate the binding affinity of gp120 to CD4, influence coreceptor tropism, and play an important role in neutralising antibody responses. Because of the challenges associated with crystallising fully glycosylated proteins, most structural investigations have focused on describing the features of a non-glycosylated HIV-1 gp120 protein. Here, we use a computational approach to determine the influence of N-linked glycans on the dynamics of the HIV-1 gp120 protein and, in particular, the V3 loop. We compare the conformational dynamics of a non-glycosylated gp120 structure to that of two glycosylated gp120 structures, one with a single, and a second with five, covalently linked high-mannose glycans. Our findings provide a clear illustration of the significant effect that N-linked glycosylation has on the temporal and spatial properties of the underlying protein structure. We find that glycans surrounding the V3 loop modulate its dynamics, conferring to the loop a marked propensity towards a more narrow conformation relative to its non-glycosylated counterpart. The conformational effect on the V3 loop provides further support for the suggestion that N-linked glycosylation plays a role in determining HIV-1 coreceptor tropism.
HIV 病毒颗粒包膜三聚体 gp120 上特定氨基酸连接的 N -linked 聚糖可以调节 gp120 与 CD4 的结合亲和力、影响核心受体嗜性,并在中和抗体反应中发挥重要作用。由于结晶完全糖基化蛋白存在挑战,大多数结构研究都集中在描述非糖基化 HIV-1 gp120 蛋白的特征上。在这里,我们使用计算方法来确定 N-linked 聚糖对 HIV-1 gp120 蛋白动力学的影响,特别是 V3 环。我们将非糖基化 gp120 结构的构象动力学与两种糖基化 gp120 结构进行比较,一种具有一个,另一种具有五个共价连接的高甘露糖聚糖。我们的研究结果清楚地说明了 N-linked 糖基化对蛋白质结构的时间和空间特性的显著影响。我们发现,V3 环周围的聚糖调节其动力学,使环相对于非糖基化对应物呈现出明显的更窄构象倾向。对 V3 环的构象影响进一步支持了 N-linked 糖基化在决定 HIV-1 核心受体嗜性中的作用的观点。