Def6 regulates endogenous type-I interferon responses in osteoblasts and suppresses osteogenesis

Author:

Deng Zhonghao1,Ng Courtney1,Inoue Kazuki12ORCID,Chen Ziyu1,Xia Yuhan1,Hu Xiaoyu3,Greenblatt Matthew45,Pernis Alessandra67,Zhao Baohong128ORCID

Affiliation:

1. Arthritis and Tissue Degeneration Program and David Z. Rosensweig Genomics Research Center, Hospital for Special Surgery, New York, United States

2. Department of Medicine, Weill Cornell Medical College, New York, United States

3. Institute for Immunology and School of Medicine, Tsinghua University, Beijing, China

4. Pathology and Laboratory Medicine, Weill Cornell Medical College, New York, United States

5. Research Division, Hospital for Special Surgery, New York, United States

6. Autoimmunity and Inflammation Program, Hospital for Special Surgery, New York, United States

7. Graduate Program in Immunology and Microbial Pathogenesis, Weill Cornell Graduate School of Medical Sciences, New York, United States

8. Graduate Program in Cell and Development Biology, Weill Cornell Graduate School of Medical Sciences, New York, United States

Abstract

Bone remodeling involves a balance between bone resorption and formation. The mechanisms underlying bone remodeling are not well understood. DEF6 is recently identified as a novel loci associated with bone mineral density. However, it is unclear how Def6 impacts bone remodeling. We identify Def6 as a novel osteoblastic regulator that suppresses osteoblastogenesis and bone formation. Def6 deficiency enhances both bone resorption and osteogenesis. The enhanced bone resorption in Def6-/- mice dominates, leading to osteoporosis. Mechanistically, Def6 inhibits the differentiation of both osteoclasts and osteoblasts via a common mechanism through endogenous type-I IFN-mediated feedback inhibition. RNAseq analysis shows expression of a group of IFN stimulated genes (ISGs) during osteoblastogenesis. Furthermore, we found that Def6 is a key upstream regulator of IFNβ and ISG expression in osteoblasts. Collectively, our results identify a novel immunoregulatory function of Def6 in bone remodeling, and shed insights into the interaction between immune system and bone.

Funder

NIAMS

NIH

Burroughs Wellcome Fund

Pershing Square Sohn Prize

Publisher

eLife Sciences Publications, Ltd

Subject

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

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