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FIZ1 is part of the regulatory protein complex on active photoreceptor-specific gene promoters in vivo

BACKGROUND: FIZ1 (Flt-3 Interacting Zinc-finger) is a broadly expressed protein of unknown function. We reported previously that in the mammalian retina, FIZ1 interacts with NRL (Neural-Retina Leucine-zipper), an essential transcriptional activator of rod photoreceptor-specific genes. The concentrat...

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Autores principales: Mali, Raghuveer S, Peng, Guang-Hua, Zhang, Xiao, Dang, Loan, Chen, Shiming, Mitton, Kenneth P
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2571102/
https://www.ncbi.nlm.nih.gov/pubmed/18854042
http://dx.doi.org/10.1186/1471-2199-9-87
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author Mali, Raghuveer S
Peng, Guang-Hua
Zhang, Xiao
Dang, Loan
Chen, Shiming
Mitton, Kenneth P
author_facet Mali, Raghuveer S
Peng, Guang-Hua
Zhang, Xiao
Dang, Loan
Chen, Shiming
Mitton, Kenneth P
author_sort Mali, Raghuveer S
collection PubMed
description BACKGROUND: FIZ1 (Flt-3 Interacting Zinc-finger) is a broadly expressed protein of unknown function. We reported previously that in the mammalian retina, FIZ1 interacts with NRL (Neural-Retina Leucine-zipper), an essential transcriptional activator of rod photoreceptor-specific genes. The concentration of FIZ1 in the retina increases during photoreceptor terminal maturation, when two key transcription factors NRL and CRX (Cone-Rod Homeobox) become detectable on the promoters of photoreceptor-specific genes (i.e. Rhodopsin, Pde6b). To determine if FIZ1 is involved in regulating CRX-mediated transcriptional activation, we examined FIZ1 subcellular location in mouse neural retina, its ability to interact with CRX, and its association with CRX/NRL target genes. RESULTS: FIZ1 is present in the nucleus of adult photoreceptors as well as other retinal neurons as shown by transmission electron microscopy with nano-gold labeling. FIZ1 and CRX were co-precipitated from retinal nuclear extracts with antibodies to either protein. Chromatin immunoprecipitation (ChIP) assays revealed that FIZ1 is part of the protein complex on several rod and cone gene promoters, within photoreceptor cells of the mouse retina. FIZ1 complexes with CRX or NRL on known NRL- and CRX-responsive elements, as shown by electrophoretic mobility shift assays with FIZ1 antibody. FIZ1 can directly bind to CRX, as demonstrated using yeast two-hybrid and GST pull-down assays. Co-transfection assays demonstrated that FIZ1 increases CRX-mediated activation of Opsin test promoters. Quantitative ChIP analysis revealed an increased association of FIZ1 with the Rhodopsin promoter in adult (P-25) neural retina versus immature (P-3) neural retina. The quantity of transcriptionally active RNA Polymerase-II within the Rhodopsin gene (Rho) was significantly increased in the adult neural retina, compared to the immature retina. CONCLUSION: FIZ1 directly interacts with CRX to enhance CRX's transactivation activity for target genes. Developmentally, in neural retina tissue, the increased association of FIZ1 with CRX target genes corresponds to an increased association of transcriptionally active Pol-II within the Rho gene. Together with previous findings, our results suggest that FIZ1 may act as a transcriptional co-regulator of photoreceptor-specific genes, recruited by at least two photoreceptor-specific transcription factors, CRX and NRL. Further studies are underway to elucidate the exact role of FIZ1 in photoreceptor gene expression, development and maintenance.
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spelling pubmed-25711022008-10-23 FIZ1 is part of the regulatory protein complex on active photoreceptor-specific gene promoters in vivo Mali, Raghuveer S Peng, Guang-Hua Zhang, Xiao Dang, Loan Chen, Shiming Mitton, Kenneth P BMC Mol Biol Research Article BACKGROUND: FIZ1 (Flt-3 Interacting Zinc-finger) is a broadly expressed protein of unknown function. We reported previously that in the mammalian retina, FIZ1 interacts with NRL (Neural-Retina Leucine-zipper), an essential transcriptional activator of rod photoreceptor-specific genes. The concentration of FIZ1 in the retina increases during photoreceptor terminal maturation, when two key transcription factors NRL and CRX (Cone-Rod Homeobox) become detectable on the promoters of photoreceptor-specific genes (i.e. Rhodopsin, Pde6b). To determine if FIZ1 is involved in regulating CRX-mediated transcriptional activation, we examined FIZ1 subcellular location in mouse neural retina, its ability to interact with CRX, and its association with CRX/NRL target genes. RESULTS: FIZ1 is present in the nucleus of adult photoreceptors as well as other retinal neurons as shown by transmission electron microscopy with nano-gold labeling. FIZ1 and CRX were co-precipitated from retinal nuclear extracts with antibodies to either protein. Chromatin immunoprecipitation (ChIP) assays revealed that FIZ1 is part of the protein complex on several rod and cone gene promoters, within photoreceptor cells of the mouse retina. FIZ1 complexes with CRX or NRL on known NRL- and CRX-responsive elements, as shown by electrophoretic mobility shift assays with FIZ1 antibody. FIZ1 can directly bind to CRX, as demonstrated using yeast two-hybrid and GST pull-down assays. Co-transfection assays demonstrated that FIZ1 increases CRX-mediated activation of Opsin test promoters. Quantitative ChIP analysis revealed an increased association of FIZ1 with the Rhodopsin promoter in adult (P-25) neural retina versus immature (P-3) neural retina. The quantity of transcriptionally active RNA Polymerase-II within the Rhodopsin gene (Rho) was significantly increased in the adult neural retina, compared to the immature retina. CONCLUSION: FIZ1 directly interacts with CRX to enhance CRX's transactivation activity for target genes. Developmentally, in neural retina tissue, the increased association of FIZ1 with CRX target genes corresponds to an increased association of transcriptionally active Pol-II within the Rho gene. Together with previous findings, our results suggest that FIZ1 may act as a transcriptional co-regulator of photoreceptor-specific genes, recruited by at least two photoreceptor-specific transcription factors, CRX and NRL. Further studies are underway to elucidate the exact role of FIZ1 in photoreceptor gene expression, development and maintenance. BioMed Central 2008-10-14 /pmc/articles/PMC2571102/ /pubmed/18854042 http://dx.doi.org/10.1186/1471-2199-9-87 Text en Copyright © 2008 Mali et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Mali, Raghuveer S
Peng, Guang-Hua
Zhang, Xiao
Dang, Loan
Chen, Shiming
Mitton, Kenneth P
FIZ1 is part of the regulatory protein complex on active photoreceptor-specific gene promoters in vivo
title FIZ1 is part of the regulatory protein complex on active photoreceptor-specific gene promoters in vivo
title_full FIZ1 is part of the regulatory protein complex on active photoreceptor-specific gene promoters in vivo
title_fullStr FIZ1 is part of the regulatory protein complex on active photoreceptor-specific gene promoters in vivo
title_full_unstemmed FIZ1 is part of the regulatory protein complex on active photoreceptor-specific gene promoters in vivo
title_short FIZ1 is part of the regulatory protein complex on active photoreceptor-specific gene promoters in vivo
title_sort fiz1 is part of the regulatory protein complex on active photoreceptor-specific gene promoters in vivo
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2571102/
https://www.ncbi.nlm.nih.gov/pubmed/18854042
http://dx.doi.org/10.1186/1471-2199-9-87
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