Bioactive Arg-Gly-Asp conformations in anti-integrin GPIIb-IIIa antibodies.

Receptor Pub Date : 1994-01-01
K V Prammer, J Boyer, K Ugen, S J Shattil, T Kieber-Emmons
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Abstract

Antibodies can mimic the biological function of physiological ligands, yet few examples indicate the structural similarity between antibodies and the ligands that they mimic. Originally, the competition of antibodies for ligand binding sites was conjectured to be through similar three-dimensional conformations, which represent the "internal image" of the given ligand. Here we show that residues in a complementary determining region (CDR) can adopt the same bioactive structures observed in ligands. Structure-function studies of three anti-GPIIb-IIIa murine monoclonal antibodies, PAC-1, LJ-CP3, and OP-G2, indicate that the RYD sequence in their H-CDR3 domain occupies the same conformational space as RGD in conformationally constrained, bioactive, GPIIb-IIIa cell-surface adhesion ligands. The relative location of the guanidinium and carboxylate groups in the RXD regions is identified as an important recognition feature, and the conformational space occupied by this region in the antibodies is only slightly larger than that in the most bioactive peptides. Additionally, we show that antibodies can unveil other potential bioactive sequences, which may impart specificity. Thus antibodies are an exquisite probe for identifying motifs of short adhesion stretches, thereby revealing amino acid sequences and restricted geometries that might be used as lead compounds in drug design.

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抗整合素GPIIb-IIIa抗体的生物活性Arg-Gly-Asp构象。
抗体可以模拟生理配体的生物学功能,但很少有例子表明抗体和它们所模拟的配体之间的结构相似性。最初,人们推测抗体对配体结合位点的竞争是通过相似的三维构象进行的,三维构象代表了给定配体的“内部图像”。在这里,我们发现互补决定区(CDR)中的残基可以采用与配体中观察到的相同的生物活性结构。对三种抗GPIIb-IIIa小鼠单克隆抗体PAC-1、LJ-CP3和OP-G2的结构-功能研究表明,在构象受限、具有生物活性的GPIIb-IIIa细胞表面粘附配体中,它们的H-CDR3结构域的RYD序列与RGD占据相同的构象空间。胍基和羧酸基在RXD区域的相对位置被认为是一个重要的识别特征,并且该区域在抗体中所占的构象空间仅比大多数生物活性肽中的稍大。此外,我们发现抗体可以揭示其他潜在的生物活性序列,这可能赋予特异性。因此,抗体是一种精细的探针,用于识别短粘附延伸的基序,从而揭示可能用作药物设计先导化合物的氨基酸序列和受限几何形状。
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