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Citations to this article

OTX2 loss causes rod differentiation defect in CRX-associated congenital blindness
Jerome E. Roger, … , Bo Chang, Anand Swaroop
Jerome E. Roger, … , Bo Chang, Anand Swaroop
Published January 2, 2014
Citation Information: J Clin Invest. 2014;124(2):631-643. https://doi.org/10.1172/JCI72722.
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Research Article Ophthalmology Article has an altmetric score of 16

OTX2 loss causes rod differentiation defect in CRX-associated congenital blindness

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Abstract

Leber congenital amaurosis (LCA) encompasses a set of early-onset blinding diseases that are characterized by vision loss, involuntary eye movement, and nonrecordable electroretinogram (ERG). At least 19 genes are associated with LCA, which is typically recessive; however, mutations in homeodomain transcription factor CRX lead to an autosomal dominant form of LCA. The mechanism of CRX-associated LCA is not understood. Here, we identified a spontaneous mouse mutant with a frameshift mutation in Crx (CrxRip). We determined that CrxRip is a dominant mutation that results in congenital blindness with nonrecordable response by ERG and arrested photoreceptor differentiation with no associated degeneration. Expression of LCA-associated dominant CRX frameshift mutations in mouse retina mimicked the CrxRip phenotype, which was rescued by overexpression of WT CRX. Whole-transcriptome profiling using deep RNA sequencing revealed progressive and complete loss of rod differentiation factor NRL in CrxRip retinas. Expression of NRL partially restored rod development in CrxRip/+ mice. We show that the binding of homeobox transcription factor OTX2 at the Nrl promoter was obliterated in CrxRip mice and ectopic expression of OTX2 rescued the rod differentiation defect. Together, our data indicate that OTX2 maintains Nrl expression in developing rods to consolidate rod fate. Our studies provide insights into CRX mutation-associated congenital blindness and should assist in therapeutic design.

Authors

Jerome E. Roger, Avinash Hiriyanna, Norimoto Gotoh, Hong Hao, Debbie F. Cheng, Rinki Ratnapriya, Marie-Audrey I. Kautzmann, Bo Chang, Anand Swaroop

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2018 2017 2016 2015 2014 2009 Total
Citations: 1 4 8 2 3 3 5 5 6 7 4 1 49
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Citations to this article (49)

Title and authors Publication Year
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Zheng Y, Stormo GD, Chen S
Genome Research 2025
Transcriptional precision in photoreceptor development and diseases - Lessons from 25 years of CRX research.
Zheng Y, Chen S
Frontiers in cellular neuroscience 2024
Aberrant homeodomain-DNA cooperative dimerization underlies distinct developmental defects in two dominant CRX retinopathy models.
Zheng Y, Stormo GD, Chen S
bioRxiv : the preprint server for biology 2024
Retinal primary cilia and their dysfunction in retinal neurodegenerative diseases: beyond ciliopathies.
Liu X, Pacwa A, Bresciani G, Swierczynska M, Dorecka M, Smedowski A
Molecular Medicine 2024
Molecular basis of CRX/DNA recognition and stoichiometry at the Ret4 response element.
Srivastava D, Gowribidanur-Chinnaswamy P, Gaur P, Spies M, Swaroop A, Artemyev NO
Structure (London, England : 1993) 2024
Missense mutations in CRX homeodomain cause dominant retinopathies through two distinct mechanisms
Zheng Y, Sun C, Zhang X, Ruzycki PA, Chen S
2023
Blimp-1/PRDM1 and Hr3/RORβ specify the blue-sensitive photoreceptor subtype in Drosophila by repressing the hippo pathway
Bunker J, Bashir M, Bailey S, Boodram P, Perry A, Delaney R, Tsachaki M, Sprecher SG, Nelson E, Call GB, Rister J
Frontiers in Cell and Developmental Biology 2023
Disease-causing mutations in genes encoding transcription factors critical for photoreceptor development
Sun C, Chen S
Frontiers in molecular neuroscience 2023
Cat LCA-CRX Model, Homozygous for an Antimorphic Mutation Has a Unique Phenotype
Occelli LM, Tran NM, Chen S, Petersen-Jones SM
Translational Vision Science & Technology 2023
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Advances in experimental medicine and biology 2023
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Proceedings of the National Academy of Sciences 2023
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eLife 2023
CRX haploinsufficiency compromises photoreceptor precursor translocation and differentiation in human retinal organoids
Pan D, Zhang X, Jin K, Jin ZB
Stem Cell Research & Therapy 2023
Mutations in BCOR, a co-repressor of CRX/OTX2, are associated with early-onset retinal degeneration.
Langouët M, Jolicoeur C, Javed A, Mattar P, Gearhart MD, Daiger SP, Bertelsen M, Tranebjærg L, Rendtorff ND, Grønskov K, Jespersgaard C, Chen R, Sun Z, Li H, Alirezaie N, Majewski J, Bardwell VJ, Sui R, Koenekoop RK, Cayouette M
Science Advances 2022
Developmental genome-wide occupancy analysis of bZIP transcription factor NRL uncovers the role of c-Jun in early differentiation of rod photoreceptors in the mammalian retina.
Liang X, Brooks MJ, Swaroop A
Human Molecular Genetics 2022
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K Kruczek, Z Qu, J Gentry, BR Fadl, L Gieser, S Hiriyanna, Z Batz, M Samant, A Samanta, CJ Chu, L Campello, BP Brooks, Z Wu, A Swaroop
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International journal of molecular sciences 2021
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eLife 2021
Mouse Models of Inherited Retinal Degeneration with Photoreceptor Cell Loss
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H Xie, W Zhang, M Zhang, T Akhtar, Y Li, W Yi, X Sun, Z Zuo, M Wei, X Fang, Z Yao, K Dong, S Zhong, Q Liu, Y Shen, Q Wu, X Wang, H Zhao, J Bao, K Qu, T Xue
Science Advances 2020
Loss of endocytosis-associated RabGEF1 causes aberrant morphogenesis and altered autophagy in photoreceptors leading to retinal degeneration
P Hargrove-Grimes, AK Mondal, J Gumerson, J Nellissery, AM Aponte, L Gieser, H Qian, RN Fariss, JS Bonifacino, T Li, A Swaroop, U Wolfrum
PLoS genetics 2020
CRX directs photoreceptor differentiation by accelerating chromatin remodeling at specific target sites
PA Ruzycki, X Zhang, S Chen
Epigenetics & chromatin 2018
Express: A database of transcriptome profiles encompassing known and novel transcripts across multiple development stages in eye tissues
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MT Ibrahim, T Alarcon-Martinez, I Lopez, N Fajardo, J Chiang, RK Koenekoop
Scientific Reports 2018
Cone-rod homeobox CRX controls presynaptic active zone formation in photoreceptors of mammalian retina
J Assawachananont, SY Kim, KD Kaya, R Fariss, JE Roger, A Swaroop
Human Molecular Genetics 2018
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Y Xiong, H Ji, Z You, F Yao, R Zhou, W Song, X Xia
Journal of Cellular and Molecular Medicine 2018
Transcriptome profiling of NIH3T3 cell lines expressing opsin and the P23H opsin mutant identifies candidate drugs for the treatment of retinitis pigmentosa
Y Chen, MJ Brooks, L Gieser, A Swaroop, K Palczewski
Pharmacological Research 2017
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Current Biology 2017
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Rhodopsin targeted transcriptional silencing by DNA-binding: ( a ) Schematic representation of the chromosomal location of the RHO locus and its proximal promoter elements indicating the transcription start site (in green, +1) and the location of ZF6-DB binding site (in red, ZF6-Cis) and ZF6-DB (based on Mitton et Al., 12); BAT1, Bovine A/T-rich sequence1; NRE, NRL response element; TBP, TATA box binding protein. ( b ) qReal Time PCR of mRNA levels (2^ -ΔCT ) on the adult porcine retina 15 days after vector delivery of either AAV8-hRHO-eGFP (n=2) or AAV8-hRHO-cis-del-eGFP (n=2) subretinally administered at a dose of 1x10 10 , showed that AAV8-hRHO-cis-del-eGFP resulted in decreased transduction (about fifty fold) compared with hRHO. ( c ) Histology confirmed the decrease of eGFP expression in hRHO-cis-del-eGFP injected retina compared with the retina injected with hRHO-eGFP. Scale bar, 50 µm. ( d ) qReal Time PCR of mRNA levels (2^ -ΔCT ) of adult porcine retina injected subretinally with AAV8-CMV-ZF6-DB (n=6) at a vector dose of 1x10 10 genomes copies (gc) compared with non-transduced area (n=7) of the same eye 15 days after vector delivery, resulted in robust transcriptional repression of the Rho transcript. pRHO , porcine Rhodopsin; Gnat1, Guanine Nucleotide Binding Protein1 . ( e ) Rho Immunofluorescence (green) histological confocal analysis of AAV8-CMV-ZF6-DB treated porcine retina compared with non-transduced area. Scale bar, 100 um. The treatment with ZF6-DB determined collapse of the outer-segment (OS) with apparent retention of nuclei (stained with DAPI) in the outer nuclear layer (ONL). ( f ) Immunofluorescence triple co-localization staining of porcine retina shown in ( b ) with Rho (blue), rod specific protein Gnat1 (green) and HA (ZF6-DB, red) antibodies. White arrows indicate co-localization of both HA-tag-ZF6-DB and Gnat1 rods depleted of Rho , whereas yellow arrows showed residual Rho and Gnat1 positive cells lacking ZF6-DB. A magnification of the triple staining (box) is highlighted. Scale bar, 100 µm. OS, outer segment; IS, inner segment; ONL, outer nuclear layer; INL, inner nuclear layer. ( g ) Representative fluorescence-activated cell sorting (FACS) of porcine retina 15 days after injections of either AAV8-GNAT1-eGFP (dose 1x10 12 gc) or co-injection with both AAV8-GNAT1-eGFP and AAV8-CMV-ZF6-DB (dose of eGFP, 1x10 12 gc; ZF6-DB dose 5x10 10 gc). eGFP positive sorted cells (AAV8-GNAT1-eGFP) corresponded to 17,3% of the analysed population (left panel; P2 area, green dots), whereas, 22,4% of eGFP positive cells in the retina that received both vectors (AAV8-GNAT1-eGFP and AAV8-CMV-ZF6-DB; right panel; P2 area, green dots). ( h ) qReal Time PCR on sorted rods treated with AAV8-GNAT1-eGFP (n=3) and AAV8-CMV-ZF6-DB (n=3) showed a repression of about 85% of total rhodopsin when compared with rods treated with eGFP (mRNA levels: 2^ -ΔCT ). Error bars, means +/- s.e.m. n =; *p
S Botta, E Marrocco, N Prisco, F Curion, M Renda, M Sofia, M Lupo, A Carissimo, ML Bacci, C Gesualdo, S Rossi, F Simonelli, EM Surace
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The Journal of neuroscience : the official journal of the Society for Neuroscience 2016
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Cell Reports 2016
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Disease models & mechanisms 2015
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Progress in Retinal and Eye Research 2015
Agnathia-otocephaly complex and asymmetric velopharyngeal insufficiency due to an in-frame duplication in OTX2
PI Sergouniotis, JE Urquhart, SG Williams, SS Bhaskar, GC Black, SC Lovell, DJ Whitby, WG Newman, J Clayton-Smith
Journal of Human Genetics 2015
DNase I hypersensitivity analysis of the mouse brain and retina identifies region-specific regulatory elements
MS Wilken, JA Brzezinski, AL Torre, K Siebenthall, R Thurman, P Sabo, RS Sandstrom, J Vierstra, TK Canfield, R Hansen, MA Bender, J Stamatoyannopoulos, TA Reh
Epigenetics & chromatin 2015
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