Division of Cardiovascular and Diabetes Research, Faculty of Medicine and Health, University of Leeds, Leeds, United Kingdom.
Blood. 2013 Mar 14;121(11):2117-26. doi: 10.1182/blood-2012-07-446393. Epub 2013 Jan 9.
Formation of a stable fibrin clot is dependent on interactions between factor XIII and fibrin. We have previously identified a key residue on the αC of fibrin(ogen) (Glu396) involved in binding activated factor XIII-A(2) (FXIII-A(2)); however, the functional role of this interaction and binding site(s) on FXIII-A(2) remains unknown. Here we (1) characterized the functional implications of this interaction; (2) identified by liquid-chromatography-tandem mass spectrometry the interacting residues on FXIII-A(2)* following chemical cross-linking of fibrin(ogen) αC389-402 peptides to FXIII-A(2); and (3) carried out molecular modeling of the FXIII-A(2)/peptide complex to identify contact site(s) involved. Results demonstrated that inhibition of the FXIII-A(2)/αC interaction using αC389-402 peptide (Pep1) significantly decreased incorporation of biotinamido-pentylamine and α2-antiplasmin to fibrin, and fibrin cross-linking, in contrast to Pep1-E396A and scrambled peptide controls. Pep1 did not inhibit transglutaminase-2 activity, and incorporation of biotinyl-TVQQEL to fibrin was only weakly inhibited. Molecular modeling predicted that Pep1 binds the activation peptide cleft (AP-cleft) within the β-sandwich domain of FXIII-A(2) localizing αC cross-linking Q366 to the FXIII-A(2)* active site. Our findings demonstrate that binding of fibrin αC389-402 to the AP-cleft is fundamental to clot stabilization and presents this region of FXIII-A(2)* as a potential site involved in glutamine-donor substrate recognition.
纤维蛋白凝块的形成依赖于因子 XIII 和纤维蛋白之间的相互作用。我们之前已经确定了纤维蛋白原(纤维蛋白)αC 上一个关键残基(Glu396)参与了激活的因子 XIII-A(2)(FXIII-A(2)*)的结合;然而,这种相互作用和 FXIII-A(2)*上的结合位点的功能作用仍然未知。在这里,我们(1)描述了这种相互作用的功能意义;(2)通过液相色谱-串联质谱法,鉴定了在纤维蛋白原αC389-402 肽与 FXIII-A(2)化学交联后,FXIII-A(2)上的相互作用残基;(3)进行了 FXIII-A(2)/肽复合物的分子建模,以确定涉及的接触位点。结果表明,使用αC389-402 肽(Pep1)抑制 FXIII-A(2)/αC 相互作用,与 Pep1-E396A 和乱序肽对照相比,显著降低了生物素酰胺戊基胺和α2-抗纤溶酶掺入纤维蛋白以及纤维蛋白交联。Pep1 不抑制转谷氨酰胺酶-2 活性,生物素化-TVQQEL 掺入纤维蛋白的抑制作用也很弱。分子建模预测 Pep1 结合 FXIII-A(2)*β-夹层域中的激活肽裂隙(AP-cleft),使αC 交联 Q366 定位在 FXIII-A(2)*的活性位点。我们的研究结果表明,纤维蛋白αC389-402 与 AP-cleft 的结合对于凝块稳定是至关重要的,并将 FXIII-A(2)*的这一区域作为一个潜在的与谷氨酰胺供体底物识别相关的位点。