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Transition from Rolling to Firm Adhesion Can Be Mimicked by Extension of Integrin αLβ2 in an Intermediate Affinity State

机译:在中间亲和力状态下整合素αLβ2的延伸可以模拟从滚动到牢固粘附的过渡

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摘要

αLβ2 affinity for intercellular adhesion molecule-1 (ICAM-1) is regulated by the conformation of the αL I domain, which is in turn controlled by the conformation and orientation of other adjacent domains. Additionally, overall integrin conformation (bent versus straightened) influences the orientation of the I domain and access to its ligands, influencing adhesive efficiency. The open or high affinity I domain conformation supports strong adhesion, whereas the closed, low affinity conformation mediates weak interactions or rolling. We have previously suggested that αLβ2 can also exist on the cell surface in an intermediate affinity state. Here we have studied the adhesive properties of integrin αLβ2 containing mutant I domains with intermediate affinities for ICAM-1. In an overall bent conformation, the intermediate affinity state of αLβ2 is hardly detected by conventional adhesion assays, but robust adhesion is seen when an extended conformation is induced by a small molecule α/β I allosteric antagonist. Intermediate affinity αLβ2 supports more stable rolling than wild-type αLβ2 under shear conditions. Moreover, antagonist-induced extension transforms rolling adhesion into firm adhesion in a manner reminiscent of chemokine activation of integrin αLβ2. These findings suggest the relevance of intermediate affinity states of αLβ2 to the transition between inactive and active states and demonstrate the importance of both I domain affinity and overall integrin conformation for cell adhesion.
机译:αLβ2对细胞间粘附分子-1(ICAM-1)的亲和力受αLI结构域的构象的调节,而该结构又受其他相邻结构域的构象和方向的控制。此外,整体整合素的构象(弯曲与拉直)会影响I结构域的方向和接近其配体的位置,从而影响粘合效率。开放的或高亲和力的I结构域构象支持强粘附力,而封闭的低亲和力构象介导弱相互作用或滚动。先前我们已经提出,αLβ2也可以以中等亲和力状态存在于细胞表面。在这里,我们研究了含有整合素αLβ2的突变体结构域,对ICAM-1具有中等亲和力。在总体弯曲构象中,很难通过常规粘附测定法检测到αLβ2的中间亲和力状态,但是当小分子α/βI变构拮抗剂诱导延伸构象时,可以看到牢固的粘附。在剪切条件下,中间亲和力αLβ2比野生型αLβ2支持更稳定的滚动。此外,拮抗剂诱导的延伸以使整合素αLβ2趋化因子活化的方式使滚动粘附转化为牢固粘附。这些发现表明,αLβ 2 的中间亲和力状态与非活性状态和活性状态之间的转换有关,并证明了I结构域亲和力和整体整合素构象对于细胞粘附的重要性。

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