TY - JOUR
T1 - Targeted overexpression of osteoactivin in cells of osteoclastic lineage promotes osteoclastic resorption and bone loss in mice
AU - Sheng, Matilda H.C.
AU - Wergedal, Jon E.
AU - Mohan, Subburaman
AU - Amoui, Mehran
AU - Baylink, David J.
AU - Lau, K. H.William
N1 - This study sought to test whether targeted overexpression of osteoactivin (OA) in cells of osteoclastic lineage, using the tartrate-resistant acid phosphase (TRAP) exon 1B/C promoter to drive OA expression, would increase bone resorption and bone loss in vivo. OA transgenic osteoclasts showed ∼2-fold increases in OA mRNA and proteins compared wild-type (WT) osteoclasts.
PY - 2012/4/20
Y1 - 2012/4/20
N2 - This study sought to test whether targeted overexpression of osteoactivin (OA) in cells of osteoclastic lineage, using the tartrate-resistant acid phosphase (TRAP) exon 1B/C promoter to drive OA expression, would increase bone resorption and bone loss in vivo. OA transgenic osteoclasts showed ~2-fold increases in OA mRNA and proteins compared wild-type (WT) osteoclasts. However, the OA expression in transgenic osteoblasts was not different. At 4, 8, and 15.3 week-old, transgenic mice showed significant bone loss determined by pQCT and confirmed by μ-CT. In vitro, transgenic osteoclasts were twice as large, had twice as much TRAP activity, resorbed twice as much bone matrix, and expressed twice as much osteoclastic genes (MMP9, calciton receptor, and ADAM12), as WT osteoclasts. The siRNA-mediated suppression of OA expression in RAW264.7-derived osteoclasts reduced cell size and osteoclastic gene expression. Bone histomorphometry revealed that transgenic mice had more osteoclasts and osteoclast surface. Plasma c-telopeptide (a resorption biomarker) measurements confirmed an increase in bone resorption in transgenic mice in vivo. In contrast, histomorphometric bone formation parameters and plasma levels of bone formation biomarkers (osteocalcin and pro-collagen type I N-terminal peptide) were not different between transgenic mice and WT littermates, indicating the lack of bone formation effects. In conclusion, this study provides compelling in vivo evidence that osteoclast-derived OA is a novel stimulator of osteoclast activity and bone resorption.
AB - This study sought to test whether targeted overexpression of osteoactivin (OA) in cells of osteoclastic lineage, using the tartrate-resistant acid phosphase (TRAP) exon 1B/C promoter to drive OA expression, would increase bone resorption and bone loss in vivo. OA transgenic osteoclasts showed ~2-fold increases in OA mRNA and proteins compared wild-type (WT) osteoclasts. However, the OA expression in transgenic osteoblasts was not different. At 4, 8, and 15.3 week-old, transgenic mice showed significant bone loss determined by pQCT and confirmed by μ-CT. In vitro, transgenic osteoclasts were twice as large, had twice as much TRAP activity, resorbed twice as much bone matrix, and expressed twice as much osteoclastic genes (MMP9, calciton receptor, and ADAM12), as WT osteoclasts. The siRNA-mediated suppression of OA expression in RAW264.7-derived osteoclasts reduced cell size and osteoclastic gene expression. Bone histomorphometry revealed that transgenic mice had more osteoclasts and osteoclast surface. Plasma c-telopeptide (a resorption biomarker) measurements confirmed an increase in bone resorption in transgenic mice in vivo. In contrast, histomorphometric bone formation parameters and plasma levels of bone formation biomarkers (osteocalcin and pro-collagen type I N-terminal peptide) were not different between transgenic mice and WT littermates, indicating the lack of bone formation effects. In conclusion, this study provides compelling in vivo evidence that osteoclast-derived OA is a novel stimulator of osteoclast activity and bone resorption.
KW - Bone and Bones/diagnostic imaging
KW - Age Factors
KW - Tartrate-Resistant Acid Phosphatase
KW - Male
KW - X-Ray Microtomography
KW - Female
KW - Bone Resorption/blood
KW - Osteoclasts/metabolism
KW - Promoter Regions, Genetic
KW - Gene Expression
KW - Bone Density
KW - Mice, Inbred C57BL
KW - Acid Phosphatase/genetics
KW - Procollagen/blood
KW - Cell Size
KW - Mice, Transgenic
KW - Cell Nucleus Size
KW - Osteocalcin/blood
KW - Eye Proteins/biosynthesis
KW - Phenotype
KW - Animals
KW - Isoenzymes/genetics
KW - Osteoblasts/metabolism
KW - Membrane Glycoproteins/biosynthesis
KW - Mice
KW - Peptide Fragments/blood
KW - src-Family Kinases/metabolism
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UR - http://www.scopus.com/inward/citedby.url?scp=84859952474&partnerID=8YFLogxK
UR - https://www.mendeley.com/catalogue/19f3658c-801d-3775-874f-b59070d11aeb/
U2 - 10.1371/journal.pone.0035280
DO - 10.1371/journal.pone.0035280
M3 - Article
C2 - 22536365
SN - 1932-6203
VL - 7
SP - e35280
JO - PLoS ONE
JF - PLoS ONE
IS - 4
M1 - e35280
ER -