Osteocyte-Derived CaMKK2 Regulates Osteoclasts and Bone Mass in a Sex-Dependent Manner through Secreted Calpastatin

Author:

Williams Justin N.12,Irwin Mavis12,Li Yong12,Kambrath Anuradha Valiya12,Mattingly Brett T.12,Patel Sheel123,Kittaka Mizuho24,Collins Rebecca N.12,Clough Nicholas A.12,Doud Emma H.5,Mosley Amber L.5,Bellido Teresita12,Bruzzaniti Angela24,Plotkin Lilian I.12ORCID,Trinidad Jonathan C.6,Thompson William R.27ORCID,Bonewald Lynda F.12,Sankar Uma12ORCID

Affiliation:

1. Department of Anatomy, Cell Biology and Physiology, Indiana University School of Medicine, Indianapolis, IN 46202, USA

2. Indiana Center for Musculoskeletal Health, Indiana University School of Medicine, Indianapolis, IN 46202, USA

3. Division of Biomedical Science, Marian University College of Osteopathic Medicine, Indianapolis, IN 46022, USA

4. Department of Biomedical Sciences and Comprehensive Care, Indiana University School of Dentistry, Indianapolis, IN 46202, USA

5. Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, Indianapolis, IN 46202, USA

6. Department of Chemistry, Biological Mass Spectrometry Facility, Indiana University, Bloomington, IN 47405, USA

7. Department of Physical Therapy, School of Health and Human Sciences, Indianapolis, IN 46202, USA

Abstract

Calcium/calmodulin (CaM)-dependent protein kinase kinase 2 (CaMKK2) regulates bone remodeling through its effects on osteoblasts and osteoclasts. However, its role in osteocytes, the most abundant bone cell type and the master regulator of bone remodeling, remains unknown. Here we report that the conditional deletion of CaMKK2 from osteocytes using Dentine matrix protein 1 (Dmp1)-8kb-Cre mice led to enhanced bone mass only in female mice owing to a suppression of osteoclasts. Conditioned media isolated from female CaMKK2-deficient osteocytes inhibited osteoclast formation and function in in vitro assays, indicating a role for osteocyte-secreted factors. Proteomics analysis revealed significantly higher levels of extracellular calpastatin, a specific inhibitor of calcium-dependent cysteine proteases calpains, in female CaMKK2 null osteocyte conditioned media, compared to media from female control osteocytes. Further, exogenously added non-cell permeable recombinant calpastatin domain I elicited a marked, dose-dependent inhibition of female wild-type osteoclasts and depletion of calpastatin from female CaMKK2-deficient osteocyte conditioned media reversed the inhibition of matrix resorption by osteoclasts. Our findings reveal a novel role for extracellular calpastatin in regulating female osteoclast function and unravel a novel CaMKK2-mediated paracrine mechanism of osteoclast regulation by female osteocytes.

Funder

NIAMS/NIH awards

Indiana Clinical and Translational Sciences Institute

Veterans Research Administration Merit

Comprehensive Musculoskeletal T32 Training Program

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference52 articles.

1. Burr, D.B., and Allen, M.R. (2014). Basic and Applied Bone Biology, Academic Press.

2. The amazing osteocyte;Bonewald;J. Bone Miner. Res. Off. J. Am. Soc. Bone Miner. Res.,2011

3. Burr, D.B., and Allen, M.R. (2014). Basic and Applied Bone Biology, Academic Press.

4. The osteocyte: An endocrine cell… and more;Dallas;Endocr. Rev.,2013

5. The Osteocyte: New Insights;Robling;Annu. Rev. Physiol.,2020

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