首页> 外文OA文献 >Differential recognition of snake venom proteins expressing specific Arg-Gly-Asp (RGD) sequence motifs by wild-type and variant integrin alpha(IIb)beta(3): further evidence for distinct sites of RGD ligand recognition exhibiting negative allostery
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Differential recognition of snake venom proteins expressing specific Arg-Gly-Asp (RGD) sequence motifs by wild-type and variant integrin alpha(IIb)beta(3): further evidence for distinct sites of RGD ligand recognition exhibiting negative allostery

机译:野生型和变异整联蛋白alpha(IIb)beta(3)对表达特定Arg-Gly-Asp(RGD)序列基序的蛇毒蛋白的差异识别:RGD配体识别的不同位点表现出负变构的进一步证据

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摘要

Several studies have demonstrated that the amino acid residues flanking the Arg-Gly-Asp (RGD) sequence of high-affinity ligands modulate their specificity of interaction with integrin complexes. Because of the absence of structural data for integrin complexes with bound ligand, the molecular basis for this specificity modulation remains obscure. In a previous paper [Rahman, Lu, Kakkar and Authi (1995) Biochem, J. 312, 223-232] we demonstrated that two genetically distinct venom-derived RGD proteins, kistrin and dendroaspin (both containing the sequence PRGDMP), were simple competitors, indicating the recognition of an identical binding site on the alpha(IIb)beta(3) complex. Furthermore, both kistrin and dendroaspin inhibited the binding of the disintegrin elegantin (containing the sequence ARGDNP) via a non-competitive mechanism, suggesting that the binding of elegantin to the alpha(IIb)beta(3) complex was at a remote site and downregulated via an allosteric mechanism. Here we present further evidence for distinct RGD ligand recognition sites on the alpha(IIb)beta(3) complex that exhibit a negative allosteric relationship. A panel of well-characterized recombinant dendroaspin and elegantin derivatives were employed for this study. These recombinant molecules were constructed as glutathione S-transferase fusion proteins with either an Ala or Pro residue N-terminal to the RGD sequence in combination with either a Met or an Asn residue immediately C-terminal. Equilibrium competition experiments showed that elegantin binding to ADP-treated platelets was inhibited by derivatives Eleg, AM (ARGDMP) and Eleg, PM (PRGDMP) via an allosteric competitive mechanism, providing direct evidence that modulation of the RGD motif can alter competitive behaviour, In addition, recombinant kistrin and dendroaspin both inhibited elegantin binding via a non-competitive mechanism, confirming our previous observations, Further evidence for distinct binding sites employing an independent approach was obtained by analysing the binding of the panel of venom proteins to the functionally defective heterodimer alpha(IIb)beta(3) Ser(123) --> Ala expressed on Chinese hamster ovary cells, These studies demonstrated that simple competitors kistrin and dendroaspin bound with high affinity to the variant integrin complex. In contrast, the binding of elegantin and most significantly, recombinant Dendro, PN (PRGDNP) and Dendro, AN (ARGDNP) were abolished, These observations, taken together, are consistent with a model depicting the presence of distinct sites of RGD ligand recognition on the alpha(IIb)beta(3) complex that show the preferential recognition of specific RGD motifs. Competition experiments demonstrate a negative allosteric relationship between these RGD recognition sites.
机译:数项研究表明,高亲和力配体的Arg-Gly-Asp(RGD)序列侧翼的氨基酸残基可调节其与整联蛋白复合物相互作用的特异性。由于缺乏具有结合的配体的整联蛋白复合物的结构数据,因此这种特异性调节的分子基础仍然不清楚。在以前的论文中[Rahman,Lu,Kakkar和Authi(1995)Biochem,J. 312,223-232],我们证明了两种遗传上不同的毒液衍生的RGD蛋白,即麒麟蛋白和树突毒素(均包含序列PRGDMP),很简单。竞争对手,表明在alpha(IIb)beta(3)复杂的相同的结合位点的识别。此外,纤连蛋白和树突蛋白都通过一种非竞争性机制抑制了整联蛋白蓝素的结合(包含序列ARGDNP),这表明蓝素与α(IIb)beta(3)复合物的结合处于远端并且被下调。通过变构机制。在这里,我们提供了进一步的证据表明,α(IIb)beta(3)复合物上的不同RGD配体识别位点表现出负的变构关系。一组特征明确的重组树突状aspashin和lamestin衍生物用于这项研究。这些重组分子被构建为谷胱甘肽S-转移酶融合蛋白,在RGD序列的N末端有Ala或Pro残基,在C末端具有Met或Asn残基。平衡竞争实验表明,衍生物Eleg,AM(ARGDMP)和Eleg,PM(PRGDMP)通过变构竞争机制抑制了来福林与ADP处理的血小板的结合,这直接证明了RGD基序的调节可以改变竞争行为。此外,重组菊粉蛋白和树突蛋白都通过非竞争性机制抑制了莱曼蛋白的结合,这证实了我们先前的观察结果。通过分析毒蛋白与功能缺陷的异二聚体α的结合,获得了采用独立方法的独特结合位点的进一步证据。 (IIb)beta(3)Ser(123)-> Ala在中国仓鼠卵巢细胞上表达,这些研究表明,简单的竞争蛋白kistrin和dendroaspin与变体整联蛋白复合物具有高亲和力。相比之下,Elegantin和最重要的重组Dendro,PN(PRGDNP)和Dendro,AN(ARGDNP)的结合被取消。这些观察结果合在一起,与描述RGD配体识别不同位点的模型相一致。 alpha(IIb)beta(3)复杂,显示特定RGD图案的优先识别。竞争实验证明了这些RGD识别位点之间的负变构关系。

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