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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Minimal modification in the factor VIII B-domain sequence ameliorates the murine hemophilia A phenotype.
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Minimal modification in the factor VIII B-domain sequence ameliorates the murine hemophilia A phenotype.

机译:因子VIII B结构域序列的最小修饰改善了鼠血友病A表型。

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Recombinant canine B-domain deleted (BDD) factor VIII (FVIII) is predominantly expressed as a single-chain protein and exhibits greater stability after activation compared with human FVIII-BDD. We generated a novel BDD-FVIII variant (FVIII-RH) with an amino acid change at the furin cleavage site within the B domain (position R1645H) that mimics the canine sequence (HHQR vs human RHQR). Compared with human FVIII-BDD, expression of FVIII-RH protein revealed a 2.5-fold increase in the single-chain form. Notably, FVIII-RH exhibited a twofold increase in biological activity compared with FVIII-BDD, likely due to its slower dissociation of the A2-domain upon thrombin activation. Injection of FVIII-RH protein in hemophilia A (HA) mice resulted in more efficacious hemostasis following vascular injury in both the macro- and microcirculation. These findings were successfully translated to adeno-associated viral (AAV)-based liver gene transfer in HA mice. Expression of circulating FVIII-RH was approximately twofold higher compared with AAV-FVIII-BDD-injected mice. Moreover, FVIII-RH exhibits superior procoagulant effects compared with FVIII-BDD following a series of hemostatic challenges. Notably, the immunogenicity of FVIII-RH did not differ from FVIII-BDD. Thus, FVIII-RH is an attractive bioengineered molecule for improving efficacy without increased immunogenicity and may be suitable for both protein- and gene-based strategies for HA.
机译:与人FVIII-BDD相比,重组犬B结构域缺失(BDD)因子VIII(FVIII)主要表达为单链蛋白,并且在激活后表现出更大的稳定性。我们生成了一个新的BDD-FVIII变体(FVIII-RH),该氨基酸在B结构域(位置R1645H)的弗林蛋白酶切割位点具有氨基酸变化,可模拟犬齿序列(HHQR与人RHQR)。与人FVIII-BDD相比,FVIII-RH蛋白的表达显示单链形式增加了2.5倍。值得注意的是,与FVIII-BDD相比,FVIII-RH的生物学活性提高了两倍,这可能是由于凝血酶激活后A2-结构域的解离较慢。在血友病A(HA)小鼠中注射FVIII-RH蛋白后,在大循环和微循环中,血管损伤后导致更有效的止血。这些发现已成功翻译为HA小鼠中基于腺相关病毒(AAV)的肝脏基因转移。与注射AAV-FVIII-BDD的小鼠相比,循环FVIII-RH的表达高约两倍。此外,在一系列止血挑战之后,与FVIII-BDD相比,FVIII-RH表现出优异的促凝作用。值得注意的是,FVIII-RH的免疫原性与FVIII-BDD没有区别。因此,FVIII-RH是一种有吸引力的生物工程分子,可以提高功效而不会增加免疫原性,并且可能适用于基于蛋白质和基因的HA策略。

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