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光感受器中磷酸二酯酶5的表达可挽救因膜鸟苷酸环化酶失调而诱导的视网膜变性。

Phosphodiesterase 5 expression in photoreceptors rescues retinal degeneration induced by deregulation of membrane guanylyl cyclase.

作者信息

Dizhoor Alexander M, Sato Shinya, Luo Zhuokai, Tan Lyuqi, Levin Fay E, Olshevskaya Elena V, Peshenko Igor V, Kefalov Vladimir J

机构信息

Pennsylvania College of Optometry, Salus at Drexel University, Elkins Park, Pennsylvania, United States; Graduate Program in Biomedicine, Salus at Drexel University, Elkins Park, Pennsylvania, United States; Department of Neurobiology and Anatomy, Drexel University, Philadelphia, Pennsylvania, United States.

Gavin Herbert Eye Institute, Department of Ophthalmology and Center for Translational Vision Research, University of California, Irvine, California, United States.

出版信息

J Biol Chem. 2025 Mar;301(3):108265. doi: 10.1016/j.jbc.2025.108265. Epub 2025 Feb 3.

Abstract

Mutations in retinal membrane guanylyl cyclase 1 (RetGC1) and its calcium-sensor protein (guanylyl cyclase activating protein 1, GCAP1) cause congenital dominant retinopathies by elevation of cGMP synthesis in photoreceptors in the dark. We explored counteracting the elevated cGMP synthesis causing photoreceptor degeneration using ectopic expression of a nonphotoreceptor cGMP phosphodiesterase (PDE) isozyme PDE5. PDE5 primary structure was modified to direct the delivery of the recombinant PDE5 (PDE5r) to rod outer segments, by placing a C-terminal fragment derived from a cone-specific alpha-subunit of PDE6C at the C terminus of the PDE5, which allowed PDE5r expressed under control of mouse rod opsin promoter to accumulate in rod outer segments. Expression of PDE5r did not affect calcium-sensitivity of RetGC regulation in PDE5r transgenic retinas, but increased cGMP hydrolysis in the dark, which partially desensitized PDR5r rods in the dark via an "equivalent light" effect, analogous to exposure to a constant dim light of ∼20 to 40 photons μm sec. The calcium-sensitivity of RetGC regulation remained drastically shifted outside the normal physiological range in hybrid R838SPDE5r rods expressing both PDE5r and R838S RetGC1, the mutant causing GUCY2D dominant retinopathy, but the hybrid rods demonstrated a dramatic rescue from degeneration caused by the R838S RetGC1. In a similar fashion, PDE5r expression rescued degeneration of rods harboring Y99C GCAP1, one of the GCAP1 mutants most frequently causing GUCA1A dominant retinopathy. Our results open a possibility that ectopic expression of PDE5 can be used as an approach to rescue presently incurable dominant GUCY2D and GUCA1A retinopathies at the expense of a moderate reduction in rod light-sensitivity.

摘要

视网膜膜鸟苷酸环化酶1(RetGC1)及其钙传感蛋白(鸟苷酸环化酶激活蛋白1,GCAP1)的突变通过在黑暗中光感受器中cGMP合成的升高导致先天性显性视网膜病变。我们探索了使用非光感受器cGMP磷酸二酯酶(PDE)同工酶PDE5的异位表达来抵消导致光感受器退化的cGMP合成升高。通过将源自PDE6C的视锥细胞特异性α亚基的C末端片段置于PDE5的C末端,对PDE5一级结构进行修饰以将重组PDE5(PDE5r)递送至视杆外段,这使得在小鼠视杆视蛋白启动子控制下表达的PDE5r在视杆外段中积累。PDE5r的表达不影响PDE5r转基因视网膜中RetGC调节的钙敏感性,但在黑暗中增加了cGMP水解,通过“等效光”效应在黑暗中使PDR5r视杆部分脱敏,类似于暴露于约20至40个光子/μm²/秒的恒定暗光。在同时表达PDE5r和R838S RetGC1(导致GUCY2D显性视网膜病变的突变体)的杂交R838SPDE5r视杆中,RetGC调节的钙敏感性仍严重偏离正常生理范围,但杂交视杆显示出从R838S RetGC1引起的退化中得到显著挽救。以类似的方式,PDE5r的表达挽救了携带Y99C GCAP1(最常导致GUCA1A显性视网膜病变的GCAP1突变体之一)的视杆的退化。我们的结果开启了一种可能性,即PDE5的异位表达可以用作一种方法来挽救目前无法治愈的显性GUCY2D和GUCA1A视网膜病变,代价是视杆光敏感性适度降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/defd/11923828/cd7bc9ff5f2e/gr1.jpg

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