The novel visual cycle inhibitor (±)-RPE65-61 protects retinal photoreceptors from light-induced degeneration

被引:8
作者
Wang, Yuhong [1 ]
Ma, Xiang [1 ,2 ]
Muthuraman, Parthasarathy [3 ]
Raja, Arun [3 ]
Jayaraman, Aravindan [3 ]
Petrukhin, Konstantin [4 ]
Cioffi, Christopher L. [5 ]
Ma, Jian-Xing [1 ,2 ]
Moiseyev, Gennadiy [1 ,2 ]
机构
[1] Univ Oklahoma, Dept Physiol, Hlth Sci Ctr, Oklahoma City, OK 73019 USA
[2] Wake Forest Sch Med, Dept Biochem, Winston Salem, NC 27101 USA
[3] Albany Coll Pharm & Hlth Sci, Dept Basic & Clin Sci, Albany, NY USA
[4] Columbia Univ, Dept Ophthalmol, New York, NY 10027 USA
[5] Rensselaer Polytech Inst, Dept Chem & Chem Biol, Troy, NY USA
关键词
DNA-DAMAGE; EMIXUSTAT HYDROCHLORIDE; OXIDATIVE STRESS; MOUSE MODEL; RPE65; LIPOFUSCIN; ISOMEROHYDROLASE; DEHYDROGENASE; MECHANISM; BINDING;
D O I
10.1371/journal.pone.0269437
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The visual cycle refers to a series of biochemical reactions of retinoids in ocular tissues and supports the vision in vertebrates. The visual cycle regenerates visual pigments chromophore, 11-cis-retinal, and eliminates its toxic byproducts from the retina, supporting visual function and retinal neuron survival. Unfortunately, during the visual cycle, when 11-cis-retinal is being regenerated in the retina, toxic byproducts, such as all-trans-retinal and bis-retinoid is N-retinylidene-N-retinylethanolamine (A2E), are produced, which are proposed to contribute to the pathogenesis of the dry form of age-related macular degeneration (AMD). The primary biochemical defect in Stargardt disease (STGD1) is the accelerated synthesis of cytotoxic lipofuscin bisretinoids, such as A2E, in the retinal pigment epithelium (RPE) due to mutations in the ABCA4 gene. To prevent all-trans-retinal-and bisretinoid-mediated retinal degeneration, slowing down the retinoid flow by modulating the visual cycle with a small molecule has been proposed as a therapeutic strategy. The present study describes RPE65-61, a novel, non-retinoid compound, as an inhibitor of RPE65 (a key enzyme in the visual cycle), intended to modulate the excessive activity of the visual cycle to protect the retina from harm degenerative diseases. Our data demonstrated that (+/-)-RPE65-61 selectively inhibited retinoid isomerase activity of RPE65, with an IC50 of 80 nM. Furthermore, (+/-)-RPE65-61 inhibited RPE65 via an uncompetitive mechanism. Systemic administration of (+/-)-RPE65-61 in mice resulted in slower chromophore regeneration after light bleach, confirming in vivo target engagement and visual cycle modulation. Concomitant protection of the mouse retina from high-intensity light damage was also observed. Furthermore, RPE65-61 down-regulated the cyclic GMP-AMP synthase stimulator of interferon genes (cGAS-STING) pathway, decreased the inflammatory factor, and attenuated retinal apoptosis caused by light-induced retinal damage (LIRD), which led to the preservation of the retinal function. Taken together, (+/-)-RPE65-61 is a potent visual cycle modulator that may provide a neuroprotective therapeutic benefit for patients with STGD and AMD.
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页数:22
相关论文
共 54 条
[1]   Visual Cycle Modulation as an Approach toward Preservation of Retinal Integrity [J].
Bavik, Claes ;
Henry, Susan Hayes ;
Zhang, Yan ;
Mitts, Kyoko ;
McGinn, Tim ;
Budzynski, Ewa ;
Pashko, Andriy ;
Lieu, Kuo Lee ;
Zhong, Sheng ;
Blumberg, Bruce ;
Kuksa, Vladimir ;
Orme, Mark ;
Scott, Ian ;
Fawzi, Ahmad ;
Kubota, Ryo .
PLOS ONE, 2015, 10 (05)
[2]   Novel Pyridazinone Inhibitors for Vascular Adhesion Protein-1 (VAP-1): Old Target-New Inhibition Mode [J].
Bligt-Linden, Eva ;
Pihlavisto, Marjo ;
Szatmari, Istvan ;
Otwinowski, Zbyszek ;
Smith, David J. ;
Lazar, Laszlo ;
Fueloep, Ferenc ;
Salminen, Tiina A. .
JOURNAL OF MEDICINAL CHEMISTRY, 2013, 56 (24) :9837-9848
[3]   Lipofuscin and N-Retinylidene-N-Retinylethanolamine (A2E) Accumulate in Retinal Pigment Epithelium in Absence of Light Exposure THEIR ORIGIN IS 11-cis-RETINAL [J].
Boyer, Nicholas P. ;
Higbee, Daniel ;
Currin, Mark B. ;
Blakeley, Lorie R. ;
Chen, Chunhe ;
Ablonczy, Zsolt ;
Crouch, Rosalie K. ;
Koutalos, Yiannis .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (26) :22276-22286
[4]   Retinal Neuron Is More Sensitive to Blue Light-Induced Damage than Glia Cell Due to DNA Double-Strand Breaks [J].
Chen, Pei ;
Lai, Zhipeng ;
Wu, Yihui ;
Xu, Lijun ;
Cai, Xiaoxiao ;
Qiu, Jin ;
Yang, Panyang ;
Yang, Meng ;
Zhou, Pan ;
Zhuang, Jiejie ;
Ge, Jian ;
Yu, Keming ;
Zhuang, Jing .
CELLS, 2019, 8 (01)
[5]   Mechanism of All-trans-retinal Toxicity with Implications for Stargardt Disease and Age-related Macular Degeneration [J].
Chen, Yu ;
Okano, Kiichiro ;
Maeda, Tadao ;
Chauhan, Vishal ;
Golczak, Marcin ;
Maeda, Akiko ;
Palczewski, Krzysztof .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (07) :5059-5069
[6]   PHASE II, RANDOMIZED, PLACEBO-CONTROLLED, 90-DAY STUDY OF EMIXUSTAT HYDROCHLORIDE IN GEOGRAPHIC ATROPHY ASSOCIATED WITH DRY AGE-RELATED MACULAR DEGENERATION [J].
Dugel, Pravin U. ;
Novack, Roger L. ;
Csaky, Karl G. ;
Richmond, Preston P. ;
Birch, David G. ;
Kubota, Ryo .
RETINA-THE JOURNAL OF RETINAL AND VITREOUS DISEASES, 2015, 35 (06) :1173-1183
[7]   The 11-cis-Retinol Dehydrogenase Activity of RDH10 and Its Interaction with Visual Cycle Proteins [J].
Farjo, Krysten M. ;
Moiseyev, Gennadiy ;
Takahashi, Yusuke ;
Crouch, Rosalie K. ;
Ma, Jian-xing .
INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2009, 50 (11) :5089-5097
[8]  
Fersht A, 1985, ENZYME STRUCTURE MEC, P107
[9]   CHARACTERIZATION, LOCALIZATION, AND BIOSYNTHESIS OF AN INTERSTITIAL RETINOL-BINDING GLYCOPROTEIN IN THE HUMAN-EYE [J].
FONG, SL ;
LIOU, GI ;
LANDERS, RA ;
ALVAREZ, RA ;
GONZALEZFERNANDEZ, F ;
GLAZEBROOK, PA ;
LAM, DMK ;
BRIDGES, CDB .
JOURNAL OF NEUROCHEMISTRY, 1984, 42 (06) :1667-1676
[10]   Positively charged retinoids are potent and selective inhibitors of the trans-cis isornerization in the retinoid (visual) cycle [J].
Golczak, M ;
Kuksa, V ;
Maeda, T ;
Moise, AR ;
Palczewski, K .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (23) :8162-8167