Suppr超能文献

罗豆素中RGD基序的D到E突变对其活性、结构和动力学的影响:D残基与整合素之间相互作用的重要性。

Effect of D to E mutation of the RGD motif in rhodostomin on its activity, structure, and dynamics: importance of the interactions between the D residue and integrin.

作者信息

Chen Chiu-Yueh, Shiu Jia-Hau, Hsieh Yao-Husn, Liu Yu-Chen, Chen Yen-Chin, Chen Yi-Chun, Jeng Wen-Yih, Tang Ming-Jer, Lo Szecheng J, Chuang Woei-Jer

机构信息

Department of Biochemistry, National Cheng Kung University College of Medicine, Tainan 701, Taiwan.

出版信息

Proteins. 2009 Sep;76(4):808-21. doi: 10.1002/prot.22387.

Abstract

Rhodostomin (Rho) is a snake venom protein containing an RGD motif that specifically inhibits the integrin-binding function. Rho produced in Pichia pastoris inhibits platelet aggregation with a K(I) of 78 nM as potent as native Rho. In contrast, its D51E mutant inhibits platelet aggregation with a K(I) of 49 muM. Structural analysis of Rho and its D51E mutant showed that they have the same tertiary fold with three two-stranded antiparallel beta-sheets. There are no structural backbone differences between the RG[D/E] loop which extends outward from the protein core and the RG[D/E] sequence at its apex in a four-residue RG[D/E]M type I turn. Two minor differences between Rho and its D51E mutant were only found from their backbone dynamics and 3D structures. The R(2) value of E51 is 13% higher than that of the D51 residue. A difference in the charge separation of 1.76 A was found between the sidechains of positive (R49) and negative residues (D51 or E51).The docking of Rho into integrin alphavbeta3 showed that the backbone amide and carbonyl groups of the D51 residue of Rho were formed hydrogen bonds with the integrin residues R216 and R214, respectively. In contrast, these hydrogen bonds were absent in the D51E mutant-integrin complex. Our findings suggest that the interactions between both the sidechain and backbone of the D residue of RGD-containing ligands and integrin are important for their binding.

摘要

罗豆素(Rho)是一种含有RGD基序的蛇毒蛋白,可特异性抑制整合素结合功能。在毕赤酵母中产生的Rho抑制血小板聚集,其抑制常数(KI)为78 nM,与天然Rho一样有效。相比之下,其D51E突变体抑制血小板聚集的KI为49 μM。对Rho及其D51E突变体的结构分析表明,它们具有相同的三级结构,由三个双股反平行β折叠片组成。从蛋白质核心向外延伸的RG[D/E]环与其顶端四残基RG[D/E]M I型转角处的RG[D/E]序列之间,在结构主链上没有差异。仅在Rho及其D51E突变体的主链动力学和三维结构中发现了两个微小差异。E51的R2值比D51残基高13%。在正电荷残基(R49)和负电荷残基(D51或E51)的侧链之间发现了1.76 Å的电荷分离差异。Rho与整合素αvβ3的对接显示,Rho的D51残基的主链酰胺基和羰基分别与整合素残基R216和R214形成氢键。相比之下,在D51E突变体-整合素复合物中不存在这些氢键。我们的研究结果表明,含RGD配体的D残基的侧链和主链与整合素之间的相互作用对它们的结合很重要。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验