视紫红质
色素性视网膜炎
视蛋白
生物
Erg公司
视网膜电图
视网膜变性
视网膜
转基因
分子生物学
基因
遗传学
生物化学
作者
Sheng Wang,James Thomas,Alison Schwein,Arseniy E. Shabashvili,William W. Hauswirth,Marina S. Gorbatyuk,Alfred S. Lewin
出处
期刊:Human Gene Therapy
[Mary Ann Liebert]
日期:2010-12-03
卷期号:22 (5): 567-575
被引量:111
摘要
Autosomal dominant retinitis pigmentosa (ADRP) is frequently caused by mutations in RHO, the gene for rod photoreceptor opsin. Earlier, a study on mice carrying mutated rhodopsin transgenes on either RHO + / + or RHO + /– backgrounds suggested that the amount of wild-type rhodopsin affected survival of photoreceptors. Therefore, we treated P23H RHO transgenic mice with adeno-associated virus serotype 5 (AAV5) expressing a cDNA clone of the rhodopsin gene (RHO301) that expressed normal opsin from the mouse opsin promoter. Analysis of the electroretinogram (ERG) demonstrated that increased expression of RHO301 slowed the rate of retinal degeneration in P23H mice: at 6 months, a-wave amplitudes were increased by 100% and b-wave amplitudes by 79%. In contrast, nontransgenic mice injected with AAV5 RHO301 demonstrated a decrease in the ERG, confirming the damaging effect of rhodopsin overproduction in normal photoreceptors. In P23H mice, the increase in the ERG amplitudes was correlated with improvement of retinal structure: the thickness of the outer nuclear layer in RHO301-treated eyes was increased by 80% compared with control eyes. These findings suggest that the wild-type RHO gene can be delivered to rescue retinal degeneration in mice carrying a RHO mutation and that increased production of normal rhodopsin can suppress the effect of the mutated protein. These findings make it possible to treat ADRP caused by different mutations of RHO with the expression of wild-type RHO. In this study, Mao and colleagues examine the efficacy of AAV5-mediated gene transfer of the wild-type rhodopsin (RHO) gene in a mouse model of autosomal dominant retinitis pigmentosa. The authors find that this approach leads to the production of normal RHO protein and to the rescue of retinal degeneration.
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