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Thrombin Exosite Maturation and Ligand Binding at ABE II Help Stabilize PAR-Binding Competent Conformation at ABE I

机译:ABE II的凝血酶曝光成熟和配体结合有助于稳定在ABE I的靶向粘连性态度

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摘要

Thrombin, derived from zymogen prothrombin (ProT), is a serine protease involved in procoagulation, anticoagulation, and platelet activation. Thrombin's actions are regulated through anion-binding exosites I and II (ABE I and ABE II) that undergo maturation during activation. Mature ABEs can utilize exosite-based communication to fulfill thrombin functions. However, the conformational basis behind such long-range communication and the resultant ligand binding affinities are not well understood. Protease activated receptors (PARs), involved in platelet activation and aggregation, are known to target thrombin ABE I. Unexpectedly, PAR3 (44-56) can already bind to pro-ABE I of ProT. Nuclear magnetic resonance (NMR) ligand-enzyme titrations were used to characterize how individual PART (49-62) residues interact with pro-ABE I and mature ABE I. 1D proton line broadening studies demonstrated that binding affinities for native PAR1P (49-62, P54) and for the weak binding variant PAR1G (49-62, P54G) increased as ProT was converted to mature thrombin. H-1,N-15-HSQC titrations revealed that PAR1G residues K51, E53, F55, D58, and E60 exhibited less affinity to pro-ABE I than comparable residues in PAR3G (44-56, P51G). Individual PAR1G residues then displayed tighter binding upon exosite maturation. Long-range communication between thrombin exosites was examined by saturating ABE II with phosphorylated GpIb alpha (269-282, 3Yp) and monitoring the binding of PART and PARS peptides to ABE I. Individual PAR residues exhibited increased affinities in this dual-ligand environment supporting the presence of interexosite allostery. Exosite maturation and beneficial long-range allostery are proposed to help stabilize an ABE I conformation that can effectively bind PAR ligands.
机译:衍生自酶原凝血酶素(Prot)的凝血酶是一种胺蛋白酶,其参与了抗原,抗凝血和血小板活化。凝血酶的作用是通过在激活期间经过成熟的阴离子结合的AITES I和II(ABE I和ABE II)来调节。成熟的eBE可以利用基于曝光的通信来实现凝血酶函数。然而,这种远程通信背后的构象基础和所得配体结合亲和力尚不清楚。蛋白酶活化受体(参数)涉及血小板活化和聚集,已知靶向凝血酶ABE I.意外,PAR3(44-56)已经与PRO的Pro-abe I结合。核磁共振(NMR)配体酶滴定表征单个部分(49-62)残基如何与Pro-abe I和成熟Abe I相互作用。1D质子线扩大研究表明,天然Par1p的结合亲和力(49-62随着该子转化为成熟凝血酶,P54)和弱结合变体Par1g(49-62,p54g)增加。 H-15,N-15-HSQC滴定显示,PAR1G残基K51,E53,F55,D58和E60表现出对PRO-ABE I的亲和力不如PAR3G(44-56,P51G)的相当残留物。然后单个par1g残基在过滤成熟时显示更严格的结合。通过用磷酸化的GPIBα(269-282,3YP)饱和ABE II来检查凝血酶亚体之间的远程通信,并监测部分的结合,并将肽解析为ABE I.个体PAR残基在这种双配体环境中表现出增加的亲和力存在嵌入式血症。提出了曝光成熟和有益的远程构象,帮助稳定ABE I构象,以有效地结合配体。

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  • 来源
    《Biochemistry》 |2019年第8期|共13页
  • 作者单位

    Univ Louisville Dept Chem Louisville KY 40292 USA;

    Univ Louisville Dept Med James Graham Brown Canc Ctr Louisville KY 40202 USA;

    Univ Louisville Dept Chem Louisville KY 40292 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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