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Updated: Apr 26, 2026

Skeletal Phenotype Analysis of a Conditional Stat3 Deletion Mouse Model
Published on: July 3, 2020
Osteoblastic sclerostin loop3-LRP4 interaction required by sclerostin to inhibit bone formation
Luyao Wang1,2,3, Xiaohui Tao4,5,6, Hewen Jiang7
1Law Sau Fai Institute for Advancing Translational Medicine in Bone and Joint Diseases (TMBJ), Hong Kong Baptist University, Hong Kong SAR, China. luyaowang@hkbu.edu.hk.
Abstract:
Sclerostin negatively regulates bone formation. The marketed antibody against sclerostin loop2 promoted bone formation but may have caused severe cardiovascular events in clinical use. In our published studies, sclerostin loop3 was found to be involved in inhibitory effects of sclerostin on bone formation, whereas cardiovascular protective effects of sclerostin in mice were independent of loop3. It is necessary to investigate how sclerostin loop3 participates in the inhibitory effects of sclerostin on bone formation to facilitate developing precise strategies that promote bone formation without increasing cardiovascular risk. In this study, sclerostin loop3 was identified to bind to LRP4, thereby facilitating binding of sclerostin to LRP6 in osteoblasts. Blockade of sclerostin loop3-LRP4 interaction by both Lrp4 mutation (Lrp4m) and blocking peptide (LRP4-Pep) diminished the antagonistic effect of sclerostin on Wnt/β-catenin signaling in osteoblasts in vitro. Consistently, Lrp4m promoted bone formation in Lrp4m mice in vivo. Mechanistically, osteoblast-conditional correction of Lrp4m to wild-type Lrp4 resulted in significantly lower bone formation than Lrp4m mice, indicating that the promotive effects of Lrp4m on bone formation acted in osteoblasts in vivo. Moreover, re-expression of sclerostin dramatically inhibited bone formation in sost-/- mice, whilst the inhibitory effects of sclerostin were significantly weaker in sost-/-.Lrp4m mice. Pharmacologically, LRP4-Pep diminished the inhibitory effects of sclerostin on bone formation in SOSTki mice. Taken together, osteoblastic sclerostin loop3-LRP4 interaction, as an anchor, was required by sclerostin to bind to LRP6, thereby inhibiting bone formation. Translationally, blockade of sclerostin loop3-LRP4 interaction in osteoblasts would provide precise therapeutic strategies to promote bone formation without increasing cardiovascular risk.
Insights
Sclerostin loop3 binds LRP4 in osteoblasts, enabling sclerostin to inhibit bone formation. Blocking this interaction promotes bone growth, offering a safer therapeutic strategy.
Area of Science:
- Bone Biology
- Endocrinology
- Pharmacology
Background:
- Sclerostin inhibits bone formation; targeting it risks cardiovascular events.
- Sclerostin loop3 is implicated in bone formation inhibition but not cardiovascular effects.
- Precise strategies are needed to enhance bone formation without cardiovascular risk.
Purpose of the Study:
- To elucidate the role of sclerostin loop3 in inhibiting bone formation.
- To identify the interaction partners of sclerostin loop3 in osteoblasts.
- To explore therapeutic strategies targeting sclerostin loop3 for bone anabolism.
Main Methods:
- Investigated sclerostin loop3 interaction with LRP4 and LRP6 in osteoblasts.
- Utilized Lrp4 mutation (Lrp4m) and a blocking peptide (LRP4-Pep) to disrupt loop3-LRP4 binding.
- Assessed effects on Wnt/β-catenin signaling in vitro and bone formation in vivo in mouse models (Lrp4m, sost-/-, sost-/-.Lrp4m, SOSTki).
Main Results:
- Sclerostin loop3 binds LRP4, facilitating sclerostin-LRP6 interaction in osteoblasts.
- Disruption of loop3-LRP4 interaction (Lrp4m, LRP4-Pep) inhibited sclerostin's antagonism of Wnt/β-catenin signaling.
- Lrp4m and LRP4-Pep treatment promoted bone formation in vivo, with effects localized to osteoblasts.
- Sclerostin's inhibitory effects on bone formation were reduced in mice with disrupted loop3-LRP4 interaction.
Conclusions:
- Osteoblastic sclerostin loop3-LRP4 interaction is essential for sclerostin to bind LRP6 and inhibit bone formation.
- Blocking sclerostin loop3-LRP4 interaction offers a precise therapeutic approach to promote bone formation.
- This strategy may mitigate the cardiovascular risks associated with broader sclerostin inhibition.
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