Making the gradient: Thyroid hormone regulates cone opsin expression in the developing mouse retina
- 18 April 2006
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (16) , 6218-6223
- https://doi.org/10.1073/pnas.0509981103
Abstract
Most mammals have two types of cone photoreceptors, which contain either medium wavelength (M) or short wavelength (S) opsin. The number and spatial organization of cone types varies dramatically among species, presumably to fine-tune the retina for different visual environments. In the mouse, S- and M-opsin are expressed in an opposing dorsal-ventral gradient. We previously reported that cone opsin patterning requires thyroid hormone beta2, a nuclear hormone receptor that regulates transcription in conjunction with its ligand, thyroid hormone (TH). Here we show that exogenous TH inhibits S-opsin expression, but activates M-opsin expression. Binding of endogenous TH to TRbeta2 is required to inhibit S-opsin and to activate M-opsin. TH is symmetrically distributed in the retina at birth as S-opsin expression begins, but becomes elevated in the dorsal retina at the time of M-opsin onset (postnatal day 10). Our results show that TH is a critical regulator of both S-opsin and M-opsin, and suggest that a TH gradient may play a role in establishing the gradient of M-opsin. These results also suggest that the ratio and patterning of cone types may be determined by TH availability during retinal development.Keywords
This publication has 61 references indexed in Scilit:
- Vision abnormalities in young children exposed prenatally to organic solventsNeuroToxicology, 2005
- Thyroid Hormones in Pregnancy in Relation to Environmental Exposure to Organochlorine Compounds and MercuryEnvironmental Health Perspectives, 2005
- Regulation of cerebellar neuronal migration and neurite outgrowth by thyroxine and 3,3′,5′-triiodothyronineDevelopmental Brain Research, 2004
- Identification of ciliary epithelial‐specific genes using subtractive libraries and cDNA arrays in the avian eyeDevelopmental Dynamics, 2004
- Biochemistry, Cellular and Molecular Biology, and Physiological Roles of the Iodothyronine SelenodeiodinasesEndocrine Reviews, 2002
- The Murine Cone PhotoreceptorNeuron, 2000
- Retinoid X receptor ? gene transcripts are expressed by a subset of early generated retinal cells and eventually restricted to photoreceptorsJournal of Comparative Neurology, 1998
- Positional information and opsin identity in retinal conesJournal of Comparative Neurology, 1996
- Cell-specific effects of thyroid hormone on RC3/neurogranin expression in rat brainEndocrinology, 1996
- A sequence upstream of the mouse blue visual pigment gene directs blue cone-specific transgene expression in mouse retinasVisual Neuroscience, 1994