Disruption of Jmjd3/p16<sup>Ink4a</sup> Signaling Pathway Causes Bizarre Parosteal Osteochondromatous Proliferation (BPOP)-like Lesion in Mice.

Zhang, Feng; Wang, Yingmei; Wang, Yuying; Wang, Xinli; Zhang, Dawei; Zhao, Xiong; Jiang, Runmin; Gu, Yu et al. · J Bone Miner Res · 2021

basic_science · Level V

Where this comes from

Abstract

Bizarre parosteal osteochondromatous proliferation (BPOP), or Nora's lesion, is a rare benign osteochondromatous lesion. At present, the molecular etiology of BPOP remains unclear. JMJD3(KDM6B) is an H3K27me3 demethylase and counteracts polycomb-mediated transcription repression. Previously, Jmjd3 was shown to be critical for bone development and osteoarthritis. Here, we report that conditional deletion of Jmjd3 in chondrogenic cells unexpectedly resulted in BPOP-like lesion in mice. Biochemical investigations revealed that Jmjd3 inhibited BPOP-like lesion through p16<sup>Ink4a</sup> . Immunohistochemistry and RT-qPCR assays indicated JMJD3 and p16<sup>INK4A</sup> level were significantly reduced in human BPOP lesion compared with normal subjects. This was further confirmed by Jmjd3/Ink4a double-gene knockout mice experiments. Therefore, our results indicated the pathway of Jmjd3/p16<sup>Ink4a</sup> may be essential for the development of BPOP in human. © 2021 American Society for Bone and Mineral Research (ASBMR).

Medical subject headings