Zhu Fu-Xiang, Yang Shu-De, Liu Ze-Long, Miao Jing, Qu Hui-Ge, Chi Xiao-Yan
Life Science College of Ludong University, Yantai 264025, China.
Yao Xue Xue Bao. 2010 May;45(5):595-600.
As synthesized by vascular endothelial cells and megakaryocytes, the von Willebrand factor (vWF) plays an important hemostatic role in the binding to and stabilizing blood coagulation factor VIII (FVIII) and preventing its enzymatic degradation. Our recent work demonstrated intein can efficiently ligate BDD-FVIII (B-domaim deleted FVIII) posttranslationally by protein trans-splicing after transfer of split BDD-FVIII gene by a dual-vector system. In this study we investigated the effect of vWF on secretion and activity of intein-ligated BDD-FVIII. We observed the levels of full-length BDD-FVIII antigen secreted into culture supernatant by ELISA and their activity by Coatest assay after transfection of cultured 293 cells with intein-fused BDD-FVIII heavy- and light-chain genes simultaneously with the vWF gene co-transfected. The data showed that the amount of full-length BDD-FVIII protein and their bioactivity in vWF gene co-transfected cell supernatant were 235 +/- 21 ng x mL(-1) and 1.98 +/- 0.2 u x mL(-1), respectively, greater than that of non-vWF co-transfected cell (110 +/- 18) ng x mL(-1) and 1.10 +/- 0.15 u x nL(-1)) or just BDD-FVIII gene transfected control cell (131 +/- 25 ng x mL(-1) and 1.22 +/- 0.18 u x mL(-1)) indicating the benefit of vWF gene co-transfection in the secretion and activity of intein-spliced BDD-FVIII protein. It provided evidence that vWF gene co-transfer may be useful to improve efficacy of gene therapy for hemophilia A in protein splicing-based split FVIII gene transfer.
血管性血友病因子(vWF)由血管内皮细胞和巨核细胞合成,在结合并稳定凝血因子VIII(FVIII)以及防止其酶解方面发挥着重要的止血作用。我们最近的研究表明,在通过双载体系统转移分裂的BDD-FVIII基因后,内含肽可通过蛋白质反式剪接在翻译后有效地连接BDD-FVIII(B结构域缺失的FVIII)。在本研究中,我们调查了vWF对内含肽连接的BDD-FVIII分泌和活性的影响。在用内含肽融合的BDD-FVIII重链和轻链基因与vWF基因共转染培养的293细胞后,我们通过ELISA观察分泌到培养上清液中的全长BDD-FVIII抗原水平,并通过Coatest测定法观察其活性。数据显示,vWF基因共转染细胞上清液中全长BDD-FVIII蛋白的量及其生物活性分别为235±21 ng·mL-1和1.98±0.2 U·mL-1,高于非vWF共转染细胞(110±18)ng·mL-1和1.10±0.15 U·mL-1)或仅转染BDD-FVIII基因的对照细胞(131±25 ng·mL-1和1.22±0.18 U·mL-1),这表明vWF基因共转染对内含肽剪接的BDD-FVIII蛋白的分泌和活性有益。这提供了证据,表明在基于蛋白质剪接的分裂FVIII基因转移中,vWF基因共转移可能有助于提高A型血友病基因治疗的疗效。