Antithrombin conformational modulation by D-myo-inositol 3,4,5,6-tetrakisphosphate (TMI), a novel scaffold for the development of antithrombotic agents

被引:7
|
作者
Arantes, Pablo Ricardo [1 ]
Perez-Sanchez, Horacio [2 ]
Verli, Hugo [1 ]
机构
[1] Univ Fed Rio Grande do Sul, Ctr Biotecnol, Ave Bento Goncalves 9500,CP 15005, BR-91500970 Porto Alegre, RS, Brazil
[2] Univ Catolica Murcia UCAM, Comp Engn Dept, Bioinformat & High Performance Comp Res Grp BIO H, Murcia, Spain
来源
关键词
antithrombin; TMI; molecular dynamics; molecular modeling; bioinformatics; REACTIVE CENTER LOOP; MOLECULAR-DYNAMICS; HEPARIN-BINDING; ALLOSTERIC ACTIVATION; CRYSTAL-STRUCTURE; HIGH-AFFINITY; INHIBITION; PENTASACCHARIDE; GLYCOSYLATION; MECHANISM;
D O I
10.1080/07391102.2017.1407259
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Antithrombin (AT) is a serpin that inhibits mainly thrombin and fXa after being activated by binding to glycosaminoglycans as heparin and heparan sulfate. Upon binding, the native AT conformation, relatively inactive as a protease inhibitor, is converted to an activated form. Recently, a new compound, named TMI, was discovered in our group with nanomolar affinity to antithrombin, and shown to be able to induce a partial activation of antithrombin. As TMI represents an original scaffold for structural optimizations aiming the development of new antithrombotic drugs, the present work demonstrated, through a series of molecular dynamics simulations, that TMI is able to modulate AT reactive center loop flexibility similarly to what is observed to heparin, as well as exposing AT P1 residue, Arg393. These results represent the first atomic level indication of AT conformational activation by TMI, and may offer a predictive basis for future studies aiming TMI structural optimization.
引用
收藏
页码:4045 / 4056
页数:12
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