Abstract

Prior work demonstrated that Phlpp1 deficiency alters trabecular bone mass and enhances M-CSF responsiveness, but the cell types and requirement of Phlpp1 for this effect were unclear. To understand the function of Phlpp1 within myeloid lineage cells, we crossed Phlpp1 floxed mice with mice harboring LysM-Cre. Micro-computed tomography of the distal femur of 12-week-old mice revealed a 30% increase in bone volume per total volume of Phlpp1 female conditional knockouts, but we did not observe significant changes within male Phlpp1 cKOLysM mice. Bone histomorphmetry of the proximal tibia further revealed that Phlpp1 cKOLysM females exhibited elevated osteoclast numbers, but conversely had reduced levels of serum markers of bone resorption as compared to littermate controls. Osteoblast number and serum markers of bone formation were unchanged. In vitro assays confirmed that Phlpp1 ablation enhanced osteoclast number and area, but limited bone resorption. Additionally, reconstitution with exogenous Phlpp1 suppressed osteoclast numbers. Dose response assays demonstrated that Phlpp1−/− cells are more responsive to M-CSF, but reconstitution with Phlpp1 abrogated this effect. Furthermore, small molecule-mediated Phlpp inhibition enhanced osteoclast numbers and size. Enhanced phosphorylation of Phlpp substrates—including Akt, ERK1/2, and PKCζ—accompanied these observations. In contrast, actin cytoskeleton disruption occurred within Phlpp inhibitor treated osteoclasts. Moreover, Phlpp inhibition reduced resorption of cells cultured on bovine bone slices in vitro. Our results demonstrate that Phlpp1 deficiency within myeloid lineage cells enhances bone mass by limiting bone resorption while leaving osteoclast numbers intact; moreover, we show that Phlpp1 represses osteoclastogenesis and controls responses to M-CSF.

Highlights

  • Enhanced bone resorption is associated with conditions such as osteoporosis, cancerassociated bone loss, rheumatoid arthritis, and periodontitis

  • Our prior work demonstrated that germline deletion of Phlpp1 limited acquisition acquisition of of peak bone mass

  • Bone marrow macrophages were collected from Phlpp1−/− females or their sex-matched littermates

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Summary

Introduction

Enhanced bone resorption is associated with conditions such as osteoporosis, cancerassociated bone loss, rheumatoid arthritis, and periodontitis. 2021, 22, 9702 controlled by numerous cellular mechanisms, and decline with age in women [1,2,3].2Our of 12 prior work demonstrates that Phlpp levels are increased by estradiol in vitro [4]. A kinase that kinases is well established in osteoclastopromoting genesis and bone resorption including a kinase that is well established in promoting osteoclast differentiation, survival, andAkt, activity [5]. Phlpp inhibits tumor progression and cancer cell growth [1,2]. Thisphenotype study examines the efdueof toPhlpp non-specific expression of the Ctsk-Cre transgene study examines the fect deletion within myeloid lineage cells on bone mass This and osteoclastogenesis. Effect of Phlpp deletion within myeloid lineage cells on bone mass and osteoclastogenesis

Deletion
Conditional
Conditional Deletion of Phlpp1 Enhances Osteoclastogenesis
Phlpp1 Represses
Phlpp1 Represses Ex Vivo Osteoclastogenesis
Reconstitution of Phlpp1 Restores M-CSF Responsiveness
Phlpp Inhibition Reduces Bone Resorption In Vitro
Discussion
Generation of Phlpp1 Germline and Conditional Knockout Mice
Micro-Computed Tomography
Histology and Histomorphometry
Serum Markers of Bone Resorption and Formation
Osteoclastogenesis and Bone Resorption Assays
Western Blotting
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