Genome-Wide Mapping and Interrogation of the Nmp4 Antianabolic Bone Axis

Author:

Childress Paul1,Stayrook Keith R.2,Alvarez Marta B.3,Wang Zhiping45,Shao Yu4,Hernandez-Buquer Selene1,Mack Justin K.2,Grese Zachary R.2,He Yongzheng67,Horan Daniel1,Pavalko Fredrick M.8,Warden Stuart J.910,Robling Alexander G.1,Yang Feng-Chun67,Allen Matthew R.1,Krishnan Venkatesh2,Liu Yunlong45,Bidwell Joseph P.14

Affiliation:

1. Department of Anatomy and Cell Biology (P.C., S.H.-B., D.H., A.G.R., M.R.A., J.P.B.), Indiana University School of Medicine, Indianapolis, Indiana 46202

2. Lilly Research Laboratories (K.R.S., J.K.M., Z.R.G., V.K.), Eli Lilly and Company, Indianapolis, Indiana 46202

3. Orthopaedic Surgery (M.B.A.), Indiana University School of Medicine Indiana 46202

4. Department of Medical and Molecular Genetics (Z.W., Y.S., Y.L., J.P.B.), Indiana University School of Medicine Indiana 46202

5. Center for Computational Biology and Bioinformatics (Z.W., Y.L.), Indiana University School of Medicine Indiana 46202

6. ; Department of Pediatrics (Y.H., F.-C.Y.), Indiana University School of Medicine Indiana 46202

7. Herman B Wells Center for Pediatric Research (Y.H., F.-C.Y.); Indiana University Indianapolis, Indiana 46202

8. Cellular and Integrative Physiology (F.M.P.); Indiana University Indianapolis, Indiana 46202

9. Center for Translational Musculoskeletal Research (S.J.W.), School of Health and Rehabilitation Sciences, Indiana University Indianapolis, Indiana 46202

10. Department of Physical Therapy (S.J.W.), School of Health and Rehabilitation Sciences, Indiana University, Indianapolis, Indiana 46202

Abstract

Abstract PTH is an osteoanabolic for treating osteoporosis but its potency wanes. Disabling the transcription factor nuclear matrix protein 4 (Nmp4) in healthy, ovary-intact mice enhances bone response to PTH and bone morphogenetic protein 2 and protects from unloading-induced osteopenia. These Nmp4−/− mice exhibit expanded bone marrow populations of osteoprogenitors and supporting CD8+ T cells. To determine whether the Nmp4−/− phenotype persists in an osteoporosis model we compared PTH response in ovariectomized (ovx) wild-type (WT) and Nmp4−/− mice. To identify potential Nmp4 target genes, we performed bioinformatic/pathway profiling on Nmp4 chromatin immunoprecipitation sequencing (ChIP-seq) data. Mice (12 w) were ovx or sham operated 4 weeks before the initiation of PTH therapy. Skeletal phenotype analysis included microcomputed tomography, histomorphometry, serum profiles, fluorescence-activated cell sorting and the growth/mineralization of cultured WT and Nmp4−/− bone marrow mesenchymal stem progenitor cells (MSPCs). ChIP-seq data were derived using MC3T3-E1 preosteoblasts, murine embryonic stem cells, and 2 blood cell lines. Ovx Nmp4−/− mice exhibited an improved response to PTH coupled with elevated numbers of osteoprogenitors and CD8+ T cells, but were not protected from ovx-induced bone loss. Cultured Nmp4−/− MSPCs displayed enhanced proliferation and accelerated mineralization. ChIP-seq/gene ontology analyses identified target genes likely under Nmp4 control as enriched for negative regulators of biosynthetic processes. Interrogation of mRNA transcripts in nondifferentiating and osteogenic differentiating WT and Nmp4−/− MSPCs was performed on 90 Nmp4 target genes and differentiation markers. These data suggest that Nmp4 suppresses bone anabolism, in part, by regulating IGF-binding protein expression. Changes in Nmp4 status may lead to improvements in osteoprogenitor response to therapeutic cues.

Publisher

The Endocrine Society

Subject

Endocrinology,Molecular Biology,General Medicine

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