首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Glycan Bound to the Selectin Low Affinity State Engages Glu-88 to Stabilize the High Affinity State under Force
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Glycan Bound to the Selectin Low Affinity State Engages Glu-88 to Stabilize the High Affinity State under Force

机译:绑定到选择素低亲和力状态的聚糖与Glu-88结合以在力的作用下稳定高亲和力状态

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摘要

Selectin interactions with fucosylated glycan ligands mediate leukocyte rolling in the vasculature under shear forces. Crystal structures of P- and E-selectin suggest a two-state model in which ligand binding to the lectin domain closes loop 83–89 around the Ca2+ coordination site, enabling Glu-88 to engage Ca2+ and fucose. This triggers further allostery that opens the lectin/EGF domain hinge. The model posits that force accelerates transition from the bent (low affinity) to the extended (high affinity) state. However, transition intermediates have not been described, and the role of Glu-88 in force-assisted allostery has not been examined. Here we report the structure of the lectin and EGF domains of L-selectin bound to a fucose mimetic; that is, a terminal mannose on an N-glycan attached to a symmetry-related molecule. The structure is a transition intermediate where loop 83–89 closes to engage Ca2+ and mannose without triggering allostery that opens the lectin/EGF domain hinge. We used three complementary assays to compare ligand binding to WT selectins and to E88D selectins that replaced Glu-88 with Asp. Soluble P-selectinE88D bound with an ∼9-fold lower affinity to PSGL-1, a physiological ligand, due to faster dissociation. Adhesion frequency experiments with a biomembrane force probe could not detect interactions of P-selectinE88D with PSGL-1. Cells expressing transmembrane P-selectinE88D or L-selectinE88D detached from immobilized ligands immediately after initiating flow. Cells expressing E-selectinE88D rolled but detached faster. Our data support a two-state model for selectins in which Glu-88 must engage ligand to trigger allostery that stabilizes the high affinity state under force.
机译:选择素与岩藻糖基化的聚糖配体的相互作用介导在剪切力作用下脉管系统中白细胞的滚动。 P-和E-选择素的晶体结构表明是一种两种状态的模型,其中配体与凝集素结构域的结合使Ca 2 + 配位点周围的环83-89闭合,从而使Glu-88参与Ca 2 + 和岩藻糖。这会触发进一步的变构,从而打开凝集素/ EGF结构域的铰链。该模型假定,力会加速从弯曲(低亲和力)到扩展(高亲和力)状态的过渡。但是,尚未描述过渡中间体,也未检查Glu-88在力辅助变构中的作用。在这里,我们报告与岩藻糖模拟物结合的L-选择素的凝集素和EGF域的结构;即,在与对称相关分子连接的N-聚糖上的末端甘露糖。该结构是过渡中间体,其中环83–89闭合以接合Ca 2 + 和甘露糖,而不会触发打开凝集素/ EGF结构域铰链的变构。我们使用三种互补测定法来比较配体与WT选择素和以Asp取代Glu-88的E88D选择素的结合。由于更快的解离作用,可溶性P-selectinE88D与生理学配体PSGL-1的亲和力降低了约9倍。使用生物膜力探针的粘附频率实验无法检测P-selectinE88D与PSGL-1的相互作用。启动流动后,表达跨膜P-选择素E88D或L-选择素E88D的细胞立即从固定的配体上脱离。表达E-selectinE88D的细胞滚动但分离速度更快。我们的数据支持选择素的两种状态模型,其中Glu-88必须与配体结合才能触发变构作用,从而稳定受力下的高亲和力状态。

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