TY - JOUR
T1 - Ciliary neurotrophic factor (CNTF) protects retinal cone and rod photoreceptors by suppressing excessive formation of the visual pigments
AU - Li, Songhua
AU - Sato, Kota
AU - Gordon, William C.
AU - Sendtner, Michael
AU - Bazan, Nicolas G.
AU - Jin, Minghao
N1 - Funding Information:
This work was supported by National Institutes of Health Grants EY021208 (to M. J.), GM103340 (to N. G. B.), and EY005121 (to N. G. B), Louisiana State University School of Medicine Research Enhancement Fund (to M. J.), and Interdisziplinäres Zentrum für Klinische Forschung Grant N-304 (to M. S.). The authors declare that they have no conflicts of interest with the contents of this article. The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health.
Publisher Copyright:
© 2018 Li et al. Published under exclusive license by The American Society for Biochemistry and Molecular Biology, Inc.
PY - 2018/9/28
Y1 - 2018/9/28
N2 - The retinal pigment epithelium (RPE)-dependent visual cycle provides 11-cis-retinal to opsins in the photoreceptor outer segments to generate functional visual pigments that initiate phototransduction in response to light stimuli. Both RPE65 isomerase of the visual cycle and the rhodopsin visual pigment have recently been identified as critical players in mediating lightinduced retinal degeneration. These findings suggest that the expression and function of RPE65 and rhodopsin need to be coordinately controlled to sustain normal vision and to protect the retina from photodamage. However, the mechanism controlling the development of the retinal visual system remains poorly understood. Here, we show that deficiency in ciliary neurotrophic factor (CNTF) up-regulates the levels of rod and cone opsins accompanied by an increase in the thickness of the outer nuclear layers and the lengths of cone and rod outer segments in the mouse retina. Moreover, retinoid isomerase activity, expression levels of RPE65 and lecithin:retinol acyltransferase (LRAT), which synthesizes the RPE65 substrate, were also significantly increased in the Cntf-/- RPE. Rod a-wave and cone b-wave amplitudes of electroretinograms were increased in Cntf-/- mice, but rod b-wave amplitudes were unchanged compared with those in WT mice. Up-regulated RPE65 and LRAT levels accelerated both the visual cycle rate and recovery rate of rod light sensitivity in Cntf-/- mice. Of note, rods and cones in Cntf-/- mice exhibited hypersusceptibility to light-induced degeneration. These results indicate that CNTF is a common extracellular factor that prevents excessive production of opsins, the photoreceptor outer segments, and 11-cis-retinal to protect rods and cones from photodamage.
AB - The retinal pigment epithelium (RPE)-dependent visual cycle provides 11-cis-retinal to opsins in the photoreceptor outer segments to generate functional visual pigments that initiate phototransduction in response to light stimuli. Both RPE65 isomerase of the visual cycle and the rhodopsin visual pigment have recently been identified as critical players in mediating lightinduced retinal degeneration. These findings suggest that the expression and function of RPE65 and rhodopsin need to be coordinately controlled to sustain normal vision and to protect the retina from photodamage. However, the mechanism controlling the development of the retinal visual system remains poorly understood. Here, we show that deficiency in ciliary neurotrophic factor (CNTF) up-regulates the levels of rod and cone opsins accompanied by an increase in the thickness of the outer nuclear layers and the lengths of cone and rod outer segments in the mouse retina. Moreover, retinoid isomerase activity, expression levels of RPE65 and lecithin:retinol acyltransferase (LRAT), which synthesizes the RPE65 substrate, were also significantly increased in the Cntf-/- RPE. Rod a-wave and cone b-wave amplitudes of electroretinograms were increased in Cntf-/- mice, but rod b-wave amplitudes were unchanged compared with those in WT mice. Up-regulated RPE65 and LRAT levels accelerated both the visual cycle rate and recovery rate of rod light sensitivity in Cntf-/- mice. Of note, rods and cones in Cntf-/- mice exhibited hypersusceptibility to light-induced degeneration. These results indicate that CNTF is a common extracellular factor that prevents excessive production of opsins, the photoreceptor outer segments, and 11-cis-retinal to protect rods and cones from photodamage.
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U2 - 10.1074/jbc.RA118.004008
DO - 10.1074/jbc.RA118.004008
M3 - Article
C2 - 30115683
AN - SCOPUS:85054097106
SN - 0021-9258
VL - 293
SP - 15256
EP - 15268
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 39
ER -