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PMID: 18667607 Published · ppublish English Comparative Study Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

A core paired-type and POU homeodomain-containing transcription factor program drives retinal bipolar cell gene expression.

Kim DS, Matsuda T, Cepko CL

Abstract

The diversity of cell types found within the vertebrate CNS arises in part from action of complex transcriptional programs. In the retina, the programs driving diversification of various cell types have not been completely elucidated. To investigate gene regulatory networks that underlie formation and function of one retinal circuit component, the bipolar cell, transcriptional regulation of three bipolar cell-enriched genes was analyzed. Using in vivo retinal DNA transfection and reporter gene constructs, a 200 bp Grm6 enhancer sequence, a 445 bp Cabp5 promoter sequence, and a 164 bp Chx10 enhancer sequence, were defined, each driving reporter expression specifically in distinct but overlapping bipolar cell subtypes. Bioinformatic analysis of sequences revealed the presence of potential paired-type and POU homeodomain-containing transcription factor binding sites, which were shown to be critical for reporter expression through deletion studies. The paired-type homeodomain transcription factors (TFs) Crx and Otx2 and the POU homeodomain factor Brn2 are expressed in bipolar cells and interacted with the predicted binding sequences as assessed by electrophoretic mobility shift assay. Grm6, Cabp5, and Chx10 reporter activity was reduced in Otx2 loss-of-function retinas. Endogenous gene expression of bipolar cell molecular markers was also dependent on paired-type homeodomain-containing TFs, as assessed by RNA in situ hybridization and reverse transcription-PCR in mutant retinas. Cabp5 and Chx10 reporter expression was reduced in dominant-negative Brn2-transfected retinas. The paired-type and POU homeodomain-containing TFs Otx2 and Brn2 together appear to play a common role in regulating gene expression in retinal bipolar cells.

MeSH Terms
Animals Animals, Newborn Female Gene Expression Regulation, Developmental/physiology Homeodomain Proteins/biosynthesis,genetics,physiology Humans Mice Mice, Knockout Mice, Transgenic Otx Transcription Factors/biosynthesis,deficiency,genetics POU Domain Factors/biosynthesis,genetics,physiology Pregnancy Rats Rats, Sprague-Dawley Retinal Bipolar Cells/physiology Trans-Activators/biosynthesis,deficiency,genetics Transcription Factors/biosynthesis,genetics,physiology
Chemicals
Homeodomain Proteins Otx Transcription Factors Otx2 protein, mouse POU Domain Factors Trans-Activators Transcription Factors cone rod homeobox protein
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Kim Douglas S
Department of Genetics, Harvard Medical School, Boston, Massachusetts 02115, USA.
Matsuda Takahiko
Cepko Constance L
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Article Info
Journal
The Journal of neuroscience : the official journal of the Society for Neuroscience
Abbr.
J Neurosci
ISSN
1529-2401
Published
2008-07-30
Pages
7748-64
Language
English
Region
United States
NLM ID
8102140
PMCID
PMC2714707
Subset
IM
Grants
NEI NIH HHS · R01 EY009676-14 · United States
NEI NIH HHS · R01 EY009676-13 · United States
NEI NIH HHS · F32 EY15360 · United States
NEI NIH HHS · R01 EY009676 · United States
NEI NIH HHS · T32 EY007145-09 · United States
Howard Hughes Medical Institute · United States
NEI NIH HHS · F32 EY015360 · United States
NEI NIH HHS · R01 EY008064 · United States
NEI NIH HHS · R01 EY009676-16 · United States
NEI NIH HHS · R01 EY009676-12 · United States
NEI NIH HHS · T32 EY007145 · United States
NEI NIH HHS · F32 EY015360-01 · United States
NEI NIH HHS · R01 EY009676-15 · United States
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