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罗豆素的RGD环和C末端对调节整合素αIIbβ3识别的影响。

Effects of the RGD loop and C-terminus of rhodostomin on regulating integrin αIIbβ3 recognition.

作者信息

Chang Yao-Tsung, Shiu Jia-Hau, Huang Chun-Hao, Chen Yi-Chun, Chen Chiu-Yueh, Chang Yung-Sheng, Chuang Woei-Jer

机构信息

Institute of Basic Medical Sciences and Department of Biochemistry and Molecular Biology, Tainan, Taiwan.

Institute of Biopharmaceutical Sciences, National Cheng Kung University College of Medicine, Tainan, Taiwan.

出版信息

PLoS One. 2017 Apr 11;12(4):e0175321. doi: 10.1371/journal.pone.0175321. eCollection 2017.

Abstract

Rhodostomin (Rho) is a medium disintegrin containing a 48PRGDMP motif. We here showed that Rho proteins with P48A, M52W, and P53N mutations can selectively inhibit integrin αIIbβ3. To study the roles of the RGD loop and C-terminal region in disintegrins, we expressed Rho 48PRGDMP and 48ARGDWN mutants in Pichia pastoris containing 65P, 65PR, 65PRYH, 65PRNGLYG, and 65PRNPWNG C-terminal sequences. The effect of C-terminal region on their integrin binding affinities was αIIbβ3 > αvβ3 ≥ α5β1, and the 48ARGDWN-65PRNPWNG protein was the most selective integrin αIIbβ3 mutant. The 48ARGDWN-65PRYH, 48ARGDWN-65PRNGLYG, and 48ARGDWN-65PRNPWNG mutants had similar activities in inhibiting platelet aggregation and the binding of fibrinogen to platelet. In contrast, 48ARGDWN-65PRYH and 48ARGDWN-65PRNGLYG exhibited 2.9- and 3.0-fold decreases in inhibiting cell adhesion in comparison with that of 48ARGDWN-65PRNPWNG. Based on the results of cell adhesion, platelet aggregation and the binding of fibrinogen to platelet inhibited by ARGDWN mutants, integrin αIIbβ3 bound differently to immobilized and soluble fibrinogen. NMR structural analyses of 48ARGDWN-65PRYH, 48ARGDWN-65PRNGLYG, and 48ARGDWN-65PRNPWNG mutants demonstrated that their C-terminal regions interacted with the RGD loop. In particular, the W52 sidechain of 48ARGDWN interacted with H68 of 65PRYH, L69 of 65PRNGLYG, and N70 of 65PRNPWNG, respectively. The docking of the 48ARGDWN-65PRNPWNG mutant into integrin αIIbβ3 showed that the N70 residue formed hydrogen bonds with the αIIb D159 residue, and the W69 residue formed cation-π interaction with the β3 K125 residue. These results provide the first structural evidence that the interactions between the RGD loop and C-terminus of medium disintegrins depend on their amino acid sequences, resulting in their functional differences in the binding and selectivity of integrins.

摘要

蛇毒抗栓酶(Rho)是一种含有48PRGDMP基序的中等大小的去整合素。我们在此表明,具有P48A、M52W和P53N突变的Rho蛋白可选择性抑制整合素αIIbβ3。为了研究去整合素中RGD环和C末端区域的作用,我们在含有65P、65PR、65PRYH、65PRNGLYG和65PRNPWNG C末端序列的毕赤酵母中表达了Rho 48PRGDMP和48ARGDWN突变体。C末端区域对它们与整合素结合亲和力的影响为αIIbβ3 > αvβ3 ≥ α5β1,并且48ARGDWN-65PRNPWNG蛋白是最具选择性的整合素αIIbβ3突变体。48ARGDWN-65PRYH、48ARGDWN-65PRNGLYG和48ARGDWN-65PRNPWNG突变体在抑制血小板聚集以及纤维蛋白原与血小板结合方面具有相似的活性。相比之下,与48ARGDWN-65PRNPWNG相比,48ARGDWN-65PRYH和48ARGDWN-65PRNGLYG在抑制细胞黏附方面分别降低了2.9倍和3.0倍。基于ARGDWN突变体对细胞黏附、血小板聚集以及纤维蛋白原与血小板结合的抑制结果,整合素αIIbβ3与固定化和可溶性纤维蛋白原的结合方式不同。对48ARGDWN-65PRYH、48ARGDWN-65PRNGLYG和48ARGDWN-65PRNPWNG突变体的核磁共振结构分析表明,它们的C末端区域与RGD环相互作用。特别是,48ARGDWN的W52侧链分别与65PRYH的H68、65PRNGLYG的L69和65PRNPWNG的N70相互作用。将48ARGDWN-65PRNPWNG突变体对接至整合素αIIbβ3表明,N70残基与αIIb的D159残基形成氢键,W69残基与β3的K125残基形成阳离子-π相互作用。这些结果提供了首个结构证据,即中等大小去整合素的RGD环与C末端之间的相互作用取决于它们的氨基酸序列,从而导致它们在整合素结合和选择性方面存在功能差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/397a/5388508/ab1a81e2c18b/pone.0175321.g001.jpg

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