Department of Pediatrics, University of Florida College of Medicine, Gainesville, FL 32607, USA.
Herman B. Wells Center for Pediatric Research, Indiana University, Indianapolis, IN 46202, USA.
Mol Ther. 2022 Dec 7;30(12):3552-3569. doi: 10.1016/j.ymthe.2022.07.005. Epub 2022 Jul 12.
Hepatic adeno-associated viral (AAV) gene transfer has the potential to cure the X-linked bleeding disorder hemophilia A. However, declining therapeutic coagulation factor VIII (FVIII) expression has plagued clinical trials. To assess the mechanistic underpinnings of this loss of FVIII expression, we developed a hemophilia A mouse model that shares key features observed in clinical trials. Following liver-directed AAV8 gene transfer in the presence of rapamycin, initial FVIII protein expression declines over time in the absence of antibody formation. Surprisingly, loss of FVIII protein production occurs despite persistence of transgene and mRNA, suggesting a translational shutdown rather than a loss of transduced hepatocytes. Some of the animals develop ER stress, which may be linked to hepatic inflammatory cytokine expression. FVIII protein expression is preserved by interleukin-15/interleukin-15 receptor blockade, which suppresses CD8 T and natural killer cell responses. Interestingly, mice with initial FVIII levels >100% of normal had diminishing expression while still under immune suppression. Taken together, our findings of interanimal variability of the response, and the ability of the immune system to shut down transgene expression without utilizing cytolytic or antibody-mediated mechanisms, illustrate the challenges associated with FVIII gene transfer. Our protocols based upon cytokine blockade should help to maintain efficient FVIII expression.
肝腺相关病毒(AAV)基因转移有可能治愈 X 连锁出血性疾病血友病 A。然而,治疗性凝血因子 VIII(FVIII)表达的下降一直困扰着临床试验。为了评估这种 FVIII 表达丧失的机制基础,我们开发了一种与临床试验中观察到的关键特征相似的血友病 A 小鼠模型。在雷帕霉素存在的情况下,通过肝靶向 AAV8 基因转移后,初始 FVIII 蛋白表达随时间推移而下降,而没有抗体形成。令人惊讶的是,尽管存在转基因和 mRNA,但 FVIII 蛋白的产生仍会丢失,这表明存在翻译关闭而不是转导的肝细胞丢失。一些动物会出现内质网应激,这可能与肝炎性细胞因子的表达有关。白细胞介素 15/白细胞介素 15 受体阻断可以抑制 CD8 T 细胞和自然杀伤细胞的反应,从而保留 FVIII 蛋白的表达。有趣的是,初始 FVIII 水平高于正常水平的 100%的小鼠在仍处于免疫抑制状态下表达水平下降。总之,我们发现动物之间的反应存在变异性,免疫系统能够在不利用细胞溶解或抗体介导的机制的情况下关闭转基因表达,这说明了与 FVIII 基因转移相关的挑战。我们基于细胞因子阻断的方案应该有助于维持高效的 FVIII 表达。