首页> 外文期刊>The Biochemical Journal >Modulation of RGD sequence motifs regulates disintegrin recognition of alphaIIb beta3 and alpha5 beta1 integrin complexes. Replacement of elegantin alanine-50 with proline, N-terminal to the RGD sequence, diminishes recognition of the alpha5 beta1 co
【24h】

Modulation of RGD sequence motifs regulates disintegrin recognition of alphaIIb beta3 and alpha5 beta1 integrin complexes. Replacement of elegantin alanine-50 with proline, N-terminal to the RGD sequence, diminishes recognition of the alpha5 beta1 co

机译:RGD序列基序的调节调节αIIb beta3和α5beta1整联蛋白复合物的整联蛋白识别。用脯氨酸代替RGD序列N末端的来索拉汀丙氨酸50,减少了对alpha5 beta1 co的识别

获取原文
获取原文并翻译 | 示例
           

摘要

Several recent studies have demonstrated that the amino acid residues flanking the RGD sequence of high-affinity ligands modulate their specificity of interaction with integrin complexes. The present study has addressed the role of the residues flanking the RGD sequence in regulating the recognition by disintegrin of the alphaIIb beta3 and alpha5beta1 complexes by construction of a panel of recombinant molecules of Elegantin (the platelet aggregation inhibitor from the venom of Trimerasurus elegans) expressing specific RGD sequence motifs. Wild-type Elegantin (ARGDNP) and several variants including Eleg. AM (ARGDMP), Eleg. PM (PRGDMP) and Eleg. PN (PRGDNP) were expressed as glutathione S-transferase (GST) fusion proteins in Escherichia coli. The inhibitory efficacies of the panel of Elegantin variants were analysed in platelet adhesion assays with substrates immobilized with fibrinogen and fibronectin. Elegantin molecules containing an Ala residue N-terminal to the RGD sequence (wild-type Elegantin and Eleg. AM) showed strong inhibitory activity towards alphaIIbbeta3-dependent platelet adhesion on fibronectin, whereas a Pro residue in this position (Eleg. PM and Kistrin, the inhibitor from the venom of Calloselasma rhodostoma) engendered lower activity. The decreased activity could not be attributed to a decrease in the affinity of the disintegrin for the alphaIIb beta3 complex because both Eleg. AM and Eleg. PM had similar Kd (app) values. In contrast, Elegantin molecules into which a Met residue was introduced in place of the Asn residue C-terminal to the RGD sequence showed 10-13-fold elevated inhibitory activity towards platelet adhesion on fibrinogen and this was maintained with either a Pro or Ala residue N-terminal to the RGD sequence. In experiments with the alpha5 beta1 complex on K562 cells, the inhibitory efficacies of the panel of Elegantin molecules were analysed under two different cation conditions. First, in the presence of Ca2+/Mg2+, K562 cell adhesion on fibronectin was inhibited equally well by Elegantin and Eleg. AM but inhibited poorly by Eleg. PM and Kistrin. In contrast with platelets, the decreased inhibitory efficacy of the PRGDMP disintegrins was due to poor recognition of the alpha5 beta1 complex. In the presence of Mn2+ cation, K562 cell adhesion on fibrinogen was observed in an alpha5 beta1-dependent manner. Under these conditions both PRGD and ARGD containing disintegrins were strong inhibitors of K562 cell adhesion on fibrinogen and this was due to a markedly improved recognition of the alpha5 beta1 complex by the PRGD molecules. These observations demonstrate the pivotal role of the amino acids flanking the RGD sequence for disintegrin recognition of integrin complexes and highlight the subtle nature by which integrin-ligand binding specificity can be modulated by both cation and adhesive motif.
机译:最近的一些研究表明,高亲和力配体的RGD序列两侧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。本研究通过构建一组表达Elegantin(来自线虫的蛇毒的血小板凝集抑制剂)的构建体,解决了RGD序列两侧的残基在调节disintegrin对αIIbbeta3和alpha5beta1复合物的识别中的作用。特定的RGD序列基序。野生型Elegantin(ARGDNP)和几种变体,包括Eleg。 AM(ARGDMP),Eleg。 PM(PRGDMP)和Eleg。 PN(PRGDNP)在大肠杆菌中表达为谷胱甘肽S-转移酶(GST)融合蛋白。在用纤维蛋白原和纤连蛋白固定的底物的血小板粘附测定中分析了Elegantin变体组的抑制作用。含有RGD序列N末端Ala残基的Eleganta分子(野生型Elegantin和Eleg。AM)显示出对纤连蛋白上的αIIbbeta3依赖性血小板粘附的强抑制活性,而Pro残基处于该位置(Eleg。PM和Kistrin,毛细小球菌的毒液中的抑制剂产生较低的活性。活性降低不能归因于整联蛋白对αIIbbeta3复合物的亲和力降低,因为两个Eleg。 AM和Eleg。 PM具有相似的Kd(应用程序)值。相反,在其中引入Met残基代替RGD序列C端的Asn残基的Elegantin分子显示出对血小板粘附在纤维蛋白原上的抑制活性提高了10-13倍,并且通过Pro或Ala残基得以维持RGD序列的N端。在对K562细胞使用alpha5 beta1复合物的实验中,在两种不同的阳离子条件下分析了Elegantin分子组合的抑制效果。首先,在Ca2 + / Mg2 +的存在下,Elegantin和Eleg同样抑制了K562细胞对纤连蛋白的粘附。 AM,但是被Eleg抑制得很差。总理和克里斯汀。与血小板相反,PRGDMP整合素的抑制作用降低是由于对α5beta1复合物的识别不佳。在存在Mn2 +阳离子的情况下,以α5beta1依赖性方式观察到K562细胞粘附在纤维蛋白原上。在这些条件下,含有PRGD和ARGD的整联蛋白都是K562细胞粘附在纤维蛋白原上的强抑制剂,这是由于PRGD分子对α5beta1复合物的识别能力显着提高。这些观察结果证明了RGD序列两侧的氨基酸对于整联蛋白复合物的整联蛋白识别的关键作用,并强调了可以通过阳离子和粘附基序调节整联蛋白-配体结合特异性的微妙性质。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号