Department of Physiology, University of Oklahoma Health Sciences Center, Oklahoma City, OK 73104, United States.
Department of Physiology, University of Oklahoma Health Sciences Center, Oklahoma City, OK 73104, United States.
Biochim Biophys Acta Mol Basis Dis. 2018 Jul;1864(7):2420-2429. doi: 10.1016/j.bbadis.2018.04.014. Epub 2018 Apr 21.
The retinoid visual cycle is an ocular retinoid metabolism specifically dedicated to support vertebrate vision. The visual cycle serves not only to generate light-sensitive visual chromophore 11-cis-retinal, but also to clear toxic byproducts of normal visual cycle (i.e. all-trans-retinal and its condensation products) from the retina, ensuring both the visual function and the retinal health. Unfortunately, various conditions including genetic predisposition, environment and aging may attribute to a functional decline of the all-trans-retinal clearance. To combat all-trans-retinal mediated retinal degeneration, we sought to slow down the retinoid influx from the RPE by inhibiting the visual cycle with a small molecule. The present study describes identification of CU239, a novel non-retinoid inhibitor of RPE65, a key enzyme in the visual cycle. Our data demonstrated that CU239 selectively inhibited isomerase activity of RPE65, with IC of 6 μM. Further, our results indicated that CU239 inhibited RPE65 via competition with its substrate all-trans-retinyl ester. Mice with systemic injection of CU239 exhibited delayed chromophore regeneration after light bleach, and conferred a partial protection of the retina against injury from high intensity light. Taken together, CU239 is a potent visual cycle modulator and may have a therapeutic potential for retinal degeneration.
视黄醛视觉循环是一种专门用于支持脊椎动物视觉的眼部视黄醛代谢途径。视觉循环不仅用于生成光敏感的视觉生色团 11-顺式视黄醛,还用于清除视网膜中正常视觉循环(即全反式视黄醛及其缩合产物)的有毒副产物,以确保视觉功能和视网膜健康。不幸的是,包括遗传易感性、环境和衰老在内的各种条件都可能导致全反式视黄醛清除功能下降。为了对抗全反式视黄醛介导的视网膜变性,我们试图通过抑制小分子的视觉循环来减缓 RPE 中的视黄醛流入。本研究描述了 CU239 的鉴定,CU239 是一种新型非视黄醛 RPE65 抑制剂,RPE65 是视觉循环中的关键酶。我们的数据表明,CU239 选择性地抑制了 RPE65 的异构酶活性,IC 为 6µM。此外,我们的结果表明,CU239 通过与底物全反式视黄醇酯竞争来抑制 RPE65。用 CU239 全身注射的小鼠在光漂白后表现出色质再生延迟,并且对高强度光引起的视网膜损伤具有部分保护作用。综上所述,CU239 是一种有效的视觉循环调节剂,可能对视神经变性具有治疗潜力。