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Cloning and expression of rat coagulation factor VII.

机译:大鼠凝血因子VII的克隆和表达。

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摘要

Smaller and widely available animals such as rats are commonly used to evaluate antithrombotic drug candidates in vivo. However, the isolation and purification of FVII from rats and other species is very challenging because they are present in extremely low levels in plasma ( approximately 10 nM). Furthermore, purification of FVII from other coagulation factors present in the plasma such as prothrombin, factor IX and factor X can often be very challenging and labor-intensive. To facilitate studies on the role of the extrinsic pathway of coagulation in rats, a full-length cDNA-encoding rat factor VII was isolated using polymerase-mediated DNA amplification using a rat liver cDNA library. The cDNA codes for a 41-residue signal/propeptide region, followed by a 405-residue mature protein consisting of the light chain with gamma-carboxy glutamic acid (gla) including epidermal growth factor domains (EGF) and the heavy chain with the serine protease catalytic domain. Rat factor VII cDNA was transfected into human embryonic kidney 293 cells and several cell lines that constitutively express rat factor VII were established. The media from the stable lines expressing recombinant rat FVII were rapidly screened for functional activity and were found to normalize clotting time of FVII-depleted human plasma. The supernatants were also functionally active in the presence of tissue factor in chromogenic assays by measuring FVIIa activation using a tripeptide chromogenic substrate and in a two-stage, coupled assay measuring the generation of FXa. Recombinant rat FVII may be an important new tool in the development of novel antithrombotic drugs.
机译:较小且广泛使用的动物(例如大鼠)通常用于评估体内抗血栓药物候选物。但是,从大鼠和其他物种中分离和纯化FVII极具挑战性,因为它们在血浆中的含量极低(约10 nM)。此外,从血浆中存在的其他凝血因子(如凝血酶原,凝血因子IX和凝血因子X)纯化FVII常常非常艰巨且费力。为便于研究外在凝血途径在大鼠中的作用,使用大鼠肝脏cDNA文库通过聚合酶介导的DNA扩增分离了全长cDNA编码的大鼠VII因子。 cDNA编码一个41个残基的信号/前肽区,然后是一个405个残基的成熟蛋白,该蛋白由具有表皮生长因子结构域(EGF)的带有γ-羧基谷氨酸(gla)的轻链和带有丝氨酸的重链组成蛋白酶催化结构域。将大鼠凝血因子VII cDNA转染到人胚胎肾293细胞中,并建立了几个组成性表达大鼠凝血因子VII的细胞系。快速筛选了来自表达重组大鼠FVII的稳定株系的培养基的功能活性,发现它们可以使FVII耗尽的人血浆的凝血时间正常化。通过使用三肽发色底物测量FVIIa活化,以及在两阶段耦合分析中测量FXa的产生,在发色分析中,上清液在组织因子存在下也具有功能活性。重组大鼠FVII可能是开发新型抗血栓药物的重要新工具。

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