4.7 Article

Involvement of GABA Transporters in Atropine-Treated Myopic Retina As Revealed by iTRAQ Quantitative Proteomics

期刊

JOURNAL OF PROTEOME RESEARCH
卷 13, 期 11, 页码 4647-4658

出版社

AMER CHEMICAL SOC
DOI: 10.1021/pr500558y

关键词

retina proteomics; iTRAQ; quantitative proteomics; myopia; lens-induced myopia mouse model

资金

  1. National Medical Research Council, Singapore [NMRC/CG/SERI/T1, T2/2010, NMRC/CG/SERI/2013, NMRC/IRG/1117/2008]
  2. SingHealth Foundation [R756/40/2010 SHF, R729/13/2010 SHF]
  3. NIG [R751/35/2010 NMRC]
  4. Biomedical Research Council, Translational Clinical Research Partnership [TCRP0101672B/R826B, TCRP0101672B/R826C]
  5. NIH [R01 EY004864, R01 EY016435, R01 EY022342, P30 EY 006360]
  6. Research to Prevent Blindness, Inc. (RPB)
  7. RPB

向作者/读者索取更多资源

Atropine, a muscarinic antagonist, is known to inhibit myopia progression in several animal models and humans. However, the mode of action is not established yet. In this study, we compared quantitative iTRAQ proteomic analysis in the retinas collected from control and lens-induced myopic (LIM) mouse eyes treated with atropine. The myopic group received a (-15D) spectacle lens over the right eye on postnatal day 10 with or without atropine eye drops starting on postnatal day 24. Axial length was measured by optical low coherence interferometry (OLCI), AC-Master, and refraction was measured by automated infrared photorefractor at postnatal 24, 38, and 52 days. Retinal tissue samples were pooled from six eyes for each group. The experiments were repeated twice, and technical replicates were also performed for liquid chromatography-tandem mass spectrometry (LC-MS/MS) analysis. MetaCore was used to perform protein profiling for pathway analysis. We identified a total of 3882 unique proteins with <1% FDR by analyzing the samples in replicates for two independent experiments. This is the largest number of mouse retina proteome reported to date. Thirty proteins were found to be up-regulated (ratio for myopia/control > global mean ratio + 1 standard deviation), and 28 proteins were down-regulated (ratio for myopia/control < global mean ratio - 1 standard deviation) in myopic eyes as compared with control retinas. Pathway analysis using MetaCore revealed regulation of gamma-aminobutyric acid (GABA) levels in the myopic eyes. Detailed analysis of the quantitative proteomics data showed that the levels of GABA transporter 1 (GAT-1) were elevated in myopic retina and significantly reduced after atropine treatment. These results were further validated with immunohistochemistry and Western blot analysis. In conclusion, this study provides a comprehensive quantitative proteomic analysis of atropine-treated mouse retina and suggests the involvement of GABAergic signaling in the antimyopic effects of atropine in mouse eyes. The GABAergic transmission in the neural retina plays a pivotal role in the maintenance of axial eye growth in mammals.

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