Cooper Amy V, Standeven Kristina F, Ariëns Robert A S
Academic Unit of Molecular Vascular Medicine, University of Leeds, Leeds General Infirmary, United Kingdom.
Blood. 2003 Jul 15;102(2):535-40. doi: 10.1182/blood-2002-10-3150. Epub 2003 Mar 27.
Fibrinogen gammaA/gamma' results from alternative splicing of mRNA. This variant, which constitutes approximately 8% to 15% of plasma fibrinogen, contains FXIII and thrombin binding sites. Our objective was to investigate whether gammaA/gamma' differs in fibrin formation and structure from the more common variant gammaA/gammaA. Both variants were separated and purified by anion-exchange chromatography. Fibrin formation and clot structure of the variants and unfractionated fibrinogen were investigated by turbidity and scanning electron microscopy (SEM). Thrombin cleavage of fibrinopeptides was analyzed by high-performance liquid chromatography (HPLC). Turbidity analysis showed significantly altered polymerization rates and overall fiber thickness in gammaA/gamma' clots compared with gammaA/gammaA and unfractionated fibrinogen. This finding was consistent with a range of thrombin concentrations. HPLC demonstrated reduced rates of fibrinopeptide B (FpB) release from gammaA/gamma' fibrinogen compared with gammaA/gammaA. Delayed FpB release was associated with delayed lateral aggregation of protofibrils and significant differences were found on SEM, with gammaA/gamma' clots consisting of smaller diameter fibers and increased numbers of branch points compared with both gammaA/gammaA and unfractionated fibrinogen. These results demonstrate that the gammaA/gamma' splice variant of fibrinogen directly alters fibrin formation and structure, which may help to explain the increased thrombotic risk associated with this variant.
纤维蛋白原γA/γ'是mRNA可变剪接的产物。这种变体约占血浆纤维蛋白原的8%至15%,含有因子XIII和凝血酶结合位点。我们的目的是研究γA/γ'在纤维蛋白形成和结构方面是否与更常见的变体γA/γA有所不同。通过阴离子交换色谱法分离并纯化了这两种变体。通过比浊法和扫描电子显微镜(SEM)研究了变体和未分级纤维蛋白原的纤维蛋白形成及凝块结构。通过高效液相色谱法(HPLC)分析了纤维蛋白肽的凝血酶裂解情况。比浊分析表明,与γA/γA和未分级纤维蛋白原相比,γA/γ'凝块的聚合速率和纤维总体厚度有显著改变。这一发现与一系列凝血酶浓度一致。HPLC显示,与γA/γA相比,γA/γ'纤维蛋白原释放纤维蛋白肽B(FpB)的速率降低。FpB释放延迟与原纤维的侧向聚集延迟有关,并且在SEM上发现了显著差异,与γA/γA和未分级纤维蛋白原相比,γA/γ'凝块由直径较小的纤维组成,分支点数量增加。这些结果表明,纤维蛋白原的γA/γ'剪接变体直接改变了纤维蛋白的形成和结构,这可能有助于解释与该变体相关的血栓形成风险增加。