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磷酸二酯酶抑制剂西地那非和伐地那非可减少斑马鱼视杆光感受器外段的脱落。

Phosphodiesterase Inhibitors Sildenafil and Vardenafil Reduce Zebrafish Rod Photoreceptor Outer Segment Shedding.

作者信息

Campbell Leah J, Jensen Abbie M

机构信息

Biology Department, University of Massachusetts, Amherst, Massachusetts, United States.

Molecular and Cellular Biology Graduate Program, University of Massachusetts, Amherst, Massachusetts, United States.

出版信息

Invest Ophthalmol Vis Sci. 2017 Nov 1;58(13):5604-5615. doi: 10.1167/iovs.17-21958.

Abstract

PURPOSE

The vertebrate rod photoreceptor undergoes daily growth and shedding to renew the rod outer segment (ROS), a modified cilium that contains the phototransduction machinery. It has been demonstrated that ROS shedding is regulated by the light-dark cycle; however, we do not yet have a satisfactory understanding of the molecular mechanisms that underlie this regulation. Given that phototransduction relies on the hydrolysis of cGMP via phosphodiesterase 6 (PDE6), we examined ROS growth and shedding in zebrafish treated with cGMP-specific PDE inhibitors.

METHODS

We used transgenic zebrafish that express an inducible, transmembrane-bound mCherry protein, which forms a stripe in the ROS following a heat shock pulse and serves as a marker of ROS renewal. Zebrafish were reared in constant darkness or treated with PDE inhibitors following heat shock. Measurements of growth and shedding were analyzed in confocal z-stacks collected from treated retinas.

RESULTS

As in dark-reared zebrafish, shedding was reduced in larvae and adults treated with the PDE5/6 inhibitors sildenafil and vardenafil but not with the PDE5 inhibitor tadalafil. In addition, vardenafil noticeably affected rod inner segment morphology. The inhibitory effect of sildenafil on shedding was reversible with drug removal. Finally, cones were more sensitive than rods to the toxic effects of sildenafil and vardenafil.

CONCLUSIONS

We show that pharmacologic inhibition of PDE6 mimics the inhibition of shedding by prolonged constant darkness. The data show that the influence of the light-dark cycle on ROS renewal is regulated, in part, by initiating the shedding process through activation of the phototransduction machinery.

摘要

目的

脊椎动物的视杆光感受器每天都会生长和脱落,以更新视杆外段(ROS),这是一种经过修饰的纤毛,包含光转导机制。已有研究表明,ROS的脱落受明暗周期调节;然而,我们尚未完全理解这种调节背后的分子机制。鉴于光转导依赖于通过磷酸二酯酶6(PDE6)水解cGMP,我们研究了用cGMP特异性PDE抑制剂处理的斑马鱼的ROS生长和脱落情况。

方法

我们使用了转基因斑马鱼,其表达一种可诱导的跨膜结合mCherry蛋白,热休克脉冲后该蛋白在ROS中形成一条条纹,可作为ROS更新的标记。斑马鱼在持续黑暗中饲养或热休克后用PDE抑制剂处理。从处理后的视网膜收集的共聚焦z-stack中分析生长和脱落的测量结果。

结果

与在黑暗中饲养的斑马鱼一样,用PDE5/6抑制剂西地那非和伐地那非处理的幼虫和成虫的脱落减少,但用PDE5抑制剂他达拉非处理则没有这种效果。此外,伐地那非明显影响视杆内段的形态。西地那非对脱落的抑制作用在去除药物后是可逆的。最后,视锥细胞比视杆细胞对西地那非和伐地那非的毒性作用更敏感。

结论

我们表明,PDE6的药理学抑制模拟了长时间持续黑暗对脱落的抑制作用。数据表明,明暗周期对ROS更新的影响部分是通过激活光转导机制启动脱落过程来调节的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bf5/5667398/4cad38edd1a8/i1552-5783-58-13-5604-f01.jpg

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