TY - JOUR
T1 - Feedback induction of a photoreceptor-specific isoform of retinoid-related orphan nuclear receptor β by the rod transcription factor NRL
AU - Fu, Yulong
AU - Liu, Hong
AU - Ng, Lily
AU - Kim, Jung Woong
AU - Hao, Hong
AU - Swaroop, Anand
AU - Forrest, Douglas
PY - 2014/11/21
Y1 - 2014/11/21
N2 - Vision requires the generation of cone and rod photoreceptors that function in daylight and dim light, respectively. The neural retina leucine zipper factor (NRL) transcription factor critically controls photoreceptor fates as it stimulates rod differentiation and suppresses cone differentiation. However, the controls over NRL induction that balance rod and cone fates remain unclear. We have reported previously that the retinoidrelated orphan receptorβ gene (Rorb) is required for Nrl expression and other retinal functions. We show that Rorb differentially expresses two isoforms: RORβ2 in photoreceptors and RORβ1 in photoreceptors, progenitor cells, and other cell types. Deletion of RORβ2 or RORβ1 increased the cone:rod ratio β2-fold, whereas deletion of both isoforms in Rorb-/- mice produced almost exclusively cone-like cells at the expense of rods, suggesting that both isoforms induce Nrl. Electroporation of either RORβ isoform into retinal explants from Rorb-/- neonates reactivated Nrl and rod genes but, in Nrl-/- explants, failed to reactivate rod genes, indicating that NRL is the effector for both RORβ isoforms in rod differentiation. Unexpectedly, RORβ2 expression was lost in Nrl-/- mice. Moreover,NRLactivated the RORβ2-specific promoter of Rorb, indicating that NRL activates Rorb, its own inducer gene. We suggest that feedback activation between Nrl and Rorb genes reinforces the commitment to rod differentiation.
AB - Vision requires the generation of cone and rod photoreceptors that function in daylight and dim light, respectively. The neural retina leucine zipper factor (NRL) transcription factor critically controls photoreceptor fates as it stimulates rod differentiation and suppresses cone differentiation. However, the controls over NRL induction that balance rod and cone fates remain unclear. We have reported previously that the retinoidrelated orphan receptorβ gene (Rorb) is required for Nrl expression and other retinal functions. We show that Rorb differentially expresses two isoforms: RORβ2 in photoreceptors and RORβ1 in photoreceptors, progenitor cells, and other cell types. Deletion of RORβ2 or RORβ1 increased the cone:rod ratio β2-fold, whereas deletion of both isoforms in Rorb-/- mice produced almost exclusively cone-like cells at the expense of rods, suggesting that both isoforms induce Nrl. Electroporation of either RORβ isoform into retinal explants from Rorb-/- neonates reactivated Nrl and rod genes but, in Nrl-/- explants, failed to reactivate rod genes, indicating that NRL is the effector for both RORβ isoforms in rod differentiation. Unexpectedly, RORβ2 expression was lost in Nrl-/- mice. Moreover,NRLactivated the RORβ2-specific promoter of Rorb, indicating that NRL activates Rorb, its own inducer gene. We suggest that feedback activation between Nrl and Rorb genes reinforces the commitment to rod differentiation.
UR - http://www.scopus.com/inward/record.url?scp=84911901328&partnerID=8YFLogxK
U2 - 10.1074/jbc.M114.605774
DO - 10.1074/jbc.M114.605774
M3 - Article
C2 - 25296752
AN - SCOPUS:84911901328
SN - 0021-9258
VL - 289
SP - 32469
EP - 32480
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 47
ER -