miRNA-27a is essential for bone remodeling by modulating p62-mediated osteoclast signaling

Author:

Wang Shumin1ORCID,Maruyama Eri O2,Martinez John1ORCID,Lopes Justin2,Hsu Trunee3ORCID,Wu Wencheng1,Hsu Wei12456ORCID,Maruyama Takamitsu12ORCID

Affiliation:

1. University of Rochester Medical Center

2. The Forsyth Institute

3. Case Western Reserve University

4. Faculty of Medicine, Harvard University

5. Harvard School of Dental Medicine

6. Harvard Stem Cell Institute

Abstract

The ability to simultaneously modulate a set of genes for lineage-specific development has made miRNA an ideal master regulator for organogenesis. However, most miRNA deletions do not exhibit obvious phenotypic defects possibly due to functional redundancy. miRNAs are known to regulate skeletal lineages as the loss of their maturation enzyme Dicer impairs bone remodeling processes. Therefore, it is important to identify specific miRNA essential for bone homeostasis. We report the loss of MIR27a causing severe osteoporosis in mice. MIR27a affects osteoclast-mediated bone resorption but not osteoblast-mediated bone formation during skeletal remodeling. Gene profiling and bioinformatics further identify the specific targets of MIR27a in osteoclast cells. MIR27a exerts its effects on osteoclast differentiation through modulation of Squstm1/p62 whose mutations have been linked to Paget’s disease of bone. Our findings reveal a new MIR27a-p62 axis necessary and sufficient to mediate osteoclast differentiation and highlight a therapeutic implication for osteoporosis.

Funder

National Institutes of Health

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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