Stead Family Department of Pediatrics, Carver College of Medicine, University of Iowa, Iowa City, IA, USA.
Pappajohn Biomedical Institute, University of Iowa, Iowa City, IA, USA.
Gene Ther. 2017 Nov;24(11):742-748. doi: 10.1038/gt.2017.67. Epub 2017 Sep 14.
Current therapies for hemophilia A include frequent prophylactic or on-demand intravenous factor treatments which are costly, inconvenient and may lead to inhibitor formation. Viral vector delivery of factor VIII (FVIII) cDNA has the potential to alleviate the debilitating clotting defects. Lentiviral-based vectors delivered to murine models of hemophilia A mediate phenotypic correction. However, a limitation of lentiviral-mediated FVIII delivery is inefficient transduction of target cells. Here, we engineer a feline immunodeficiency virus (FIV) -based lentiviral vector pseudotyped with the baculovirus GP64 envelope glycoprotein to mediate efficient gene transfer to mouse hepatocytes. In anticipation of future studies in FVIII-deficient dogs, we investigated the efficacy of FIV-delivered canine FVIII (cFVIII). Codon-optimization of the cFVIII sequence increased activity and decreased blood loss as compared to the native sequence. Further, we compared a standard B-domain deleted FVIII cDNA to a cDNA including 256 amino acids of the B-domain with 11 potential asparagine-linked oligosaccharide linkages. Restoring a partial B-domain resulted in modest reduction of endoplasmic reticulum (ER) stress markers. Importantly, our optimized vectors achieved wild-type levels of phenotypic correction with minimal inhibitor formation. These studies provide insights into optimal design of a therapeutically relevant gene therapy vector for a devastating bleeding disorder.
目前治疗甲型血友病的方法包括频繁的预防性或按需静脉内因子治疗,这些治疗既昂贵又不方便,并且可能导致抑制剂的形成。VIII 因子(FVIII)cDNA 的病毒载体传递具有缓解致残性凝血缺陷的潜力。基于慢病毒的载体递送至甲型血友病的小鼠模型中可介导表型校正。然而,慢病毒介导的 FVIII 传递的一个限制是靶细胞的转导效率低下。在这里,我们设计了一种基于猫免疫缺陷病毒(FIV)的慢病毒载体,其假型化了杆状病毒 GP64 包膜糖蛋白,以介导对小鼠肝细胞的有效基因转移。预计未来将在 FVIII 缺乏的狗中进行研究,我们研究了 FIV 传递的犬 FVIII(cFVIII)的功效。与天然序列相比,cFVIII 序列的密码子优化增加了活性并减少了出血。此外,我们比较了标准 B 结构域缺失的 FVIII cDNA 与包含 256 个氨基酸的 B 结构域的 cDNA,该 cDNA 具有 11 个潜在的天冬酰胺连接的寡糖连接。恢复部分 B 结构域导致内质网(ER)应激标志物的适度减少。重要的是,我们的优化载体实现了野生型水平的表型校正,抑制剂形成最小。这些研究为设计治疗相关的基因治疗载体提供了深入了解,用于治疗严重的出血性疾病。