首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >The binding sites for competitive antagonistic, allosteric antagonistic, and agonistic antibodies to the I domain of integrin LFA-1.
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The binding sites for competitive antagonistic, allosteric antagonistic, and agonistic antibodies to the I domain of integrin LFA-1.

机译:整联蛋白LFA-1 I结构域的竞争性拮抗,变构拮抗和激动抗体的结合位点。

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摘要

We explore the binding sites for mAbs to the alpha I domain of the integrin alphaLbeta2 that can competitively inhibit, allosterically inhibit, or activate binding to the ligand ICAM-1. Ten mAbs, some of them clinically important, were mapped to species-specific residues. The results are interpreted with independent structures of the alphaL I domain determined in seven different crystal lattices and in solution, and which are present in three conformational states that differ in affinity for ligand. Six mAbs bind to adjacent regions of the beta1-alpha1 and alpha3-alpha4 loops, which show only small (mean, 0.8 angstroms; maximum, 1.8 angstroms) displacements among the eight I domain structures. Proximity to the ligand binding site and to noncontacting portions of the ICAM-1 molecule explains competitive inhibition by these mAbs. Three mAbs bind to a segment of seven residues in the beta5-alpha6 loop and alpha6 helix, in similar proximity to the ligand binding site, but on the side opposite from the beta1-alpha1/alpha3-alpha4 epitopes, and far from noncontacting portions of ICAM-1. These residues show large displacements among the eight structures in response to lattice contacts (mean, 3.6 angstroms; maximum, 9.4 angstroms), and movement of a buried Phe in the beta5-alpha6 loop is partially correlated with affinity change at the ligand binding site. Together with a lack of proximity to noncontacting portions of ICAM-1, these observations explain variation among this group of mAbs, which can either act as competitive or allosteric antagonists. One agonistic mAb binds distant from the ligand binding site of the I domain, to residues that show little movement (mean, 0.5 angstroms; maximum, 1.0 angstroms). Agonism by this mAb is thus likely to result from altering the orientation of the I domain with respect to other domains within an intact integrin alphaLbeta2 heterodimer.
机译:我们探索mAb与整联蛋白αLbeta2的αI域的结合位点,该竞争位点可以竞争性抑制,变构抑制或激活与配体ICAM-1的结合。十种单抗(其中有些在临床上具有重要意义)被定位到物种特异性残基。用在七个不同的晶格和溶液中确定的alphaL I域的独立结构来解释结果,并且它们以对配体亲和力不同的三个构象状态存在。六个mAb结合到beta1-alpha1和alpha3-alpha4环的相邻区域,在八个I结构域结构中,它们仅显示出很小的位移(平均0.8埃;最大1.8埃)。接近配体结合位点和ICAM-1分子的非接触部分可以解释这些mAb的竞争性抑制作用。三个mAb结合到β5-alpha6环和alpha6螺旋中七个残基的片段上,与配体结合位点相近,但位于与beta1-alpha1 / alpha3-alpha4表位相反的一侧,并且远离非接触部分ICAM-1。这些残基显示出响应晶格接触的八个结构之间的大位移(平均3.6埃;最大9.4埃),并且在beta5-alpha6环中掩埋的Phe的运动与配体结合位点的亲和力变化部分相关。这些观察结果加上缺乏与ICAM-1非接触部分的接近性,共同解释了这组mAb之间的差异,这些mAb可以充当竞争性或变构拮抗剂。一种激动性mAb与I结构域的配体结合位点相距很远,与几乎没有运动(平均0.5埃;最大1.0埃)的残基结合。因此,此mAb的激动可能是由于完整整合素αLbeta2异二聚体中I结构域相对于其他结构域的方向改变而引起的。

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