Department of Medical Sciences, Graduate School of Medicine, Science and Technology, Shinshu University, Matsumoto, Japan.
Department of Laboratory Medicine, Shinshu University Hospital, Matsumoto, Japan.
Int J Hematol. 2021 Nov;114(5):591-598. doi: 10.1007/s12185-021-03200-z. Epub 2021 Jul 31.
We identified a novel heterozygous AαE11del variant in a patient with congenital dysfibrinogenemia. This mutation is located in fibrinopeptide A (FpA). We analyzed the effect of AαE11del on the catalyzation of thrombin and batroxobin and simulated the stability of the complex structure between the FpA fragment (AαG6-V20) peptide and thrombin.
We performed fibrin polymerization and examined the kinetics of FpA release catalyzed by thrombin and batroxobin using purified plasma fibrinogen. To clarify the association between the AαE11 residue and thrombin, we calculated binding free energy using molecular dynamics simulation trajectories.
Increasing the thrombin concentration improved release of FpA from the patient's fibrinogen to approximately 90%, compared to the previous 50% of that of normal fibrinogen. Fibrin polymerization of variant fibrinogen also improved. In addition, greater impairment of variant FpA release from the patient's fibrinogen was observed with thrombin than with batroxobin. Moreover, the calculated binding free energy showed that the FpA fragment-thrombin complex became unstable due to the missing AαE11 residue.
Our findings indicate that the AαE11 residue is involved in FpA release in thrombin catalyzation more than in batroxobin catalyzation, and that the AαE11 residue stabilizes FpA fragment-thrombin complex formation.
我们在一名先天性纤维蛋白原血症患者中发现了一种新型的杂合 AαE11del 变异。该突变位于纤维蛋白肽 A(FpA)中。我们分析了 AαE11del 对凝血酶和巴曲酶催化作用的影响,并模拟了 FpA 片段(AαG6-V20)肽与凝血酶复合物结构的稳定性。
我们使用纯化的血浆纤维蛋白原进行纤维蛋白聚合,并检查了凝血酶和巴曲酶催化的 FpA 释放动力学。为了阐明 AαE11 残基与凝血酶之间的关系,我们使用分子动力学模拟轨迹计算了结合自由能。
与正常纤维蛋白原相比,增加凝血酶浓度可将患者纤维蛋白原的 FpA 释放量提高至约 90%,而之前仅为 50%。变异纤维蛋白原的纤维蛋白聚合也得到改善。此外,与巴曲酶相比,凝血酶对患者纤维蛋白原中变异 FpA 释放的抑制作用更大。此外,计算出的结合自由能表明,由于缺失 AαE11 残基,FpA 片段-凝血酶复合物变得不稳定。
我们的研究结果表明,AαE11 残基在凝血酶催化的 FpA 释放中比在巴曲酶催化中更为重要,并且 AαE11 残基稳定 FpA 片段-凝血酶复合物的形成。