Byrne Leah C, Dalkara Deniz, Luna Gabriel, Fisher Steven K, Clérin Emmanuelle, Sahel Jose-Alain, Léveillard Thierry, Flannery John G
J Clin Invest. 2015 Jan;125(1):105-16. doi: 10.1172/JCI65654. Epub 2014 Nov 21.
Alternative splicing of nucleoredoxin-like 1 (Nxnl1) results in 2 isoforms of the rod-derived cone viability factor. The truncated form (RdCVF) is a thioredoxin-like protein secreted by rods that promotes cone survival, while the full-length isoform (RdCVFL), which contains a thioredoxin fold, is involved in oxidative signaling and protection against hyperoxia. Here, we evaluated the effects of these different isoforms in 2 murine models of rod-cone dystrophy. We used adeno-associated virus (AAV) to express these isoforms in mice and found that both systemic and intravitreal injection of engineered AAV vectors resulted in RdCVF and RdCVFL expression in the eye. Systemic delivery of AAV92YF vectors in neonates resulted in earlier onset of RdCVF and RdCVFL expression compared with that observed with intraocular injection using the same vectors at P14. We also evaluated the efficacy of intravitreal injection using a recently developed photoreceptor-transducing AAV variant (7m8) at P14. Systemic administration of AAV92YF-RdCVF improved cone function and delayed cone loss, while AAV92YF-RdCVFL increased rhodopsin mRNA and reduced oxidative stress by-products. Intravitreal 7m8-RdCVF slowed the rate of cone cell death and increased the amplitude of the photopic electroretinogram. Together, these results indicate different functions for Nxnl1 isoforms in the retina and suggest that RdCVF gene therapy has potential for treating retinal degenerative disease.
核氧化还原蛋白样1(Nxnl1)的可变剪接产生了视杆细胞衍生的锥体细胞存活因子的两种异构体。截短形式(RdCVF)是一种由视杆细胞分泌的硫氧还蛋白样蛋白,可促进锥体细胞存活,而包含硫氧还蛋白折叠的全长异构体(RdCVFL)则参与氧化信号传导和对高氧的保护作用。在这里,我们评估了这些不同异构体在两种视杆 - 锥体细胞营养不良小鼠模型中的作用。我们使用腺相关病毒(AAV)在小鼠中表达这些异构体,发现全身和玻璃体内注射工程化的AAV载体均导致眼睛中RdCVF和RdCVFL的表达。与在P14使用相同载体进行眼内注射相比,在新生小鼠中全身递送AAV92YF载体导致RdCVF和RdCVFL表达更早开始。我们还评估了在P14使用最近开发的光感受器转导AAV变体(7m8)进行玻璃体内注射后的效果。全身给予AAV92YF - RdCVF可改善锥体细胞功能并延缓锥体细胞丢失,而AAV92YF - RdCVFL可增加视紫红质mRNA并减少氧化应激副产物。玻璃体内注射7m8 - RdCVF减缓了锥体细胞死亡速率并增加了明视觉视网膜电图的振幅。总之,这些结果表明Nxnl1异构体在视网膜中具有不同功能,并表明RdCVF基因治疗具有治疗视网膜退行性疾病的潜力。