TY - JOUR
T1 - Thyroid hormone receptor-β1 signaling is critically involved in regulating secondary ossification via promoting transcription of the Ihh gene in the epiphysis
AU - Xing, Weirong
AU - Aghajanian, Patrick
AU - Goodluck, Helen
AU - Kesavan, Chandrasekhar
AU - Cheng, Shaohong
AU - Pourteymoor, Sheila
AU - Watt, Heather
AU - Alarcon, Catrina
AU - Mohan, Subburaman
N1 - Publisher Copyright:
© 2016. American Physiological Society. All rights reserved.
PY - 2016/5/15
Y1 - 2016/5/15
N2 - Thyroid hormone (TH) action is mediated through two nuclear TH receptors, THRα and THRβ. Although the role of THRα is well established in bone, less is known about the relevance of THRβ- mediated signaling in bone development. On ther basis of our recent finding that TH signaling is essential for initiation and formation of secondary ossification center, we evaluated the role of THRs in mediating TH effects on epiphysial bone formation. Two-day treatment of TH-deficient Tshr–/– mice with TH increased THRβ1 mRNA level 3.4-fold at day 7 but had no effect on THRα1 mRNA level at the proximal tibia epiphysis. Treatment of serum-free cultures of tibias from 3-day-old mice with T3 increased THRβ1 expression 2.1- and 13-fold, respectively, at 24 and 72 h. Ten-day treatment of Tshr–/– newborns (days 5–14) with THRβ1 agonist GC1 at 0.2 or 2.0 μg/day increased BV/TV at day 21 by 225 and 263%, respectively, compared with vehicle treatment. Two-day treatment with GC1 (0.2 μg/day) increased expression levels of Indian hedgehog (Ihh) 100- fold, osterix 15-fold, and osteocalcin 59-fold compared with vehicle at day 7 in the proximal tibia epiphysis. Gel mobility shift assay demonstrated that a putative TH response element in the distal promoter of mouse Ihh gene interacted with THRβ1. GC1 treatment (1 nM) increased Ihh distal promoter activity 20-fold after 48 h in chondroctyes. Our data suggest a novel role for THRβ1 in secondary ossification at the epiphysis that involves transcriptional upregulation of Ihh gene.
AB - Thyroid hormone (TH) action is mediated through two nuclear TH receptors, THRα and THRβ. Although the role of THRα is well established in bone, less is known about the relevance of THRβ- mediated signaling in bone development. On ther basis of our recent finding that TH signaling is essential for initiation and formation of secondary ossification center, we evaluated the role of THRs in mediating TH effects on epiphysial bone formation. Two-day treatment of TH-deficient Tshr–/– mice with TH increased THRβ1 mRNA level 3.4-fold at day 7 but had no effect on THRα1 mRNA level at the proximal tibia epiphysis. Treatment of serum-free cultures of tibias from 3-day-old mice with T3 increased THRβ1 expression 2.1- and 13-fold, respectively, at 24 and 72 h. Ten-day treatment of Tshr–/– newborns (days 5–14) with THRβ1 agonist GC1 at 0.2 or 2.0 μg/day increased BV/TV at day 21 by 225 and 263%, respectively, compared with vehicle treatment. Two-day treatment with GC1 (0.2 μg/day) increased expression levels of Indian hedgehog (Ihh) 100- fold, osterix 15-fold, and osteocalcin 59-fold compared with vehicle at day 7 in the proximal tibia epiphysis. Gel mobility shift assay demonstrated that a putative TH response element in the distal promoter of mouse Ihh gene interacted with THRβ1. GC1 treatment (1 nM) increased Ihh distal promoter activity 20-fold after 48 h in chondroctyes. Our data suggest a novel role for THRβ1 in secondary ossification at the epiphysis that involves transcriptional upregulation of Ihh gene.
KW - Bone formation
KW - Chondrocytes
KW - Hypothyroidism
KW - Indian hedge hog
KW - Ossification
KW - Osteoblasts
KW - Thyroid hormones
KW - Thyroid Hormone Receptors alpha/genetics
KW - Up-Regulation
KW - Male
KW - Bone Development/genetics
KW - Tibia/metabolism
KW - RNA, Messenger/drug effects
KW - Gene Expression Regulation, Developmental
KW - Thyroid Hormone Receptors beta/agonists
KW - Hedgehog Proteins/drug effects
KW - Female
KW - Real-Time Polymerase Chain Reaction
KW - Triiodothyronine/pharmacology
KW - Epiphyses/metabolism
KW - Signal Transduction
KW - Mice, Knockout
KW - Animals
KW - Thyroxine/pharmacology
KW - Receptors, Thyrotropin/genetics
KW - Osteogenesis/genetics
KW - Mice
UR - http://www.scopus.com/inward/record.url?scp=84983745355&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=84983745355&partnerID=8YFLogxK
UR - https://www.mendeley.com/catalogue/da4055b1-f447-311d-bba6-1cad86052613/
U2 - 10.1152/ajpendo.00541.2015
DO - 10.1152/ajpendo.00541.2015
M3 - Article
C2 - 27026086
SN - 0193-1849
VL - 310
SP - E846-E854
JO - American Journal of Physiology - Endocrinology and Metabolism
JF - American Journal of Physiology - Endocrinology and Metabolism
IS - 10
ER -