H3K27me1 is essential for MMP-9-dependent H3N-terminal tail proteolysis during osteoclastogenesis
Abstract Background MMP-9 plays a direct role in the activation of pro-osteoclastogenic genes by cleaving histone H3N-terminal tail (H3NT) and altering chromatin architecture. Although H3 acetylation at K18 has been shown to stimulate MMP-9 enzymatic activity toward H3NT, nothing is known about the...
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doaj-2b309095e3f94aca97c8f02eabe93a1e2020-11-25T00:46:12ZengBMCEpigenetics & Chromatin1756-89352018-05-0111111510.1186/s13072-018-0193-1H3K27me1 is essential for MMP-9-dependent H3N-terminal tail proteolysis during osteoclastogenesisKyunghwan Kim0Yonghwan Shin1Jinman Kim2Tobias S. Ulmer3Woojin An4Department of Biochemistry and Molecular Medicine, Norris Comprehensive Cancer Center, University of Southern CaliforniaDepartment of Biochemistry and Molecular Medicine, Norris Comprehensive Cancer Center, University of Southern CaliforniaDepartment of Biochemistry and Molecular Medicine, Norris Comprehensive Cancer Center, University of Southern CaliforniaDepartment of Physiology and Neuroscience, Zilkha Neurogenetic Institute, University of Southern CaliforniaDepartment of Biochemistry and Molecular Medicine, Norris Comprehensive Cancer Center, University of Southern CaliforniaAbstract Background MMP-9 plays a direct role in the activation of pro-osteoclastogenic genes by cleaving histone H3N-terminal tail (H3NT) and altering chromatin architecture. Although H3 acetylation at K18 has been shown to stimulate MMP-9 enzymatic activity toward H3NT, nothing is known about the influence of other H3NT modifications on this epigenetic reaction. Results We show that H3 monomethylation at lysine 27 (H3K27me1) is essential for MMP-9-dependent H3NT proteolysis during RANKL-induced osteoclast differentiation. Through the recognition of H3K27me1 mark, MMP-9 localizes and generates H3NT proteolysis at the genes encoding osteoclast differentiation factors. By using RNAi and small molecule inhibitor approaches, we also confirmed that G9a is the major methyltransferase to catalyze H3K27me1 for MMP-9-dependent H3NT proteolysis and trigger the expression of osteoclast-specific genes. Conclusions Our data establish new functions for G9a-mediated H3K27me1 in MMP-9-dependent H3NT proteolysis and demonstrate how histone modification can be exploited to regulate osteoclastogenic gene expression at the molecular level. Further studies are warranted to investigate the detailed mechanism by which G9a overexpression with concomitant dysregulation of osteoclastogenesis contributes to the pathogenesis of bone disorders.http://link.springer.com/article/10.1186/s13072-018-0193-1MMP-9G9aH3 proteolysisH3K27me1Osteoclast differentiation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kyunghwan Kim Yonghwan Shin Jinman Kim Tobias S. Ulmer Woojin An |
spellingShingle |
Kyunghwan Kim Yonghwan Shin Jinman Kim Tobias S. Ulmer Woojin An H3K27me1 is essential for MMP-9-dependent H3N-terminal tail proteolysis during osteoclastogenesis Epigenetics & Chromatin MMP-9 G9a H3 proteolysis H3K27me1 Osteoclast differentiation |
author_facet |
Kyunghwan Kim Yonghwan Shin Jinman Kim Tobias S. Ulmer Woojin An |
author_sort |
Kyunghwan Kim |
title |
H3K27me1 is essential for MMP-9-dependent H3N-terminal tail proteolysis during osteoclastogenesis |
title_short |
H3K27me1 is essential for MMP-9-dependent H3N-terminal tail proteolysis during osteoclastogenesis |
title_full |
H3K27me1 is essential for MMP-9-dependent H3N-terminal tail proteolysis during osteoclastogenesis |
title_fullStr |
H3K27me1 is essential for MMP-9-dependent H3N-terminal tail proteolysis during osteoclastogenesis |
title_full_unstemmed |
H3K27me1 is essential for MMP-9-dependent H3N-terminal tail proteolysis during osteoclastogenesis |
title_sort |
h3k27me1 is essential for mmp-9-dependent h3n-terminal tail proteolysis during osteoclastogenesis |
publisher |
BMC |
series |
Epigenetics & Chromatin |
issn |
1756-8935 |
publishDate |
2018-05-01 |
description |
Abstract Background MMP-9 plays a direct role in the activation of pro-osteoclastogenic genes by cleaving histone H3N-terminal tail (H3NT) and altering chromatin architecture. Although H3 acetylation at K18 has been shown to stimulate MMP-9 enzymatic activity toward H3NT, nothing is known about the influence of other H3NT modifications on this epigenetic reaction. Results We show that H3 monomethylation at lysine 27 (H3K27me1) is essential for MMP-9-dependent H3NT proteolysis during RANKL-induced osteoclast differentiation. Through the recognition of H3K27me1 mark, MMP-9 localizes and generates H3NT proteolysis at the genes encoding osteoclast differentiation factors. By using RNAi and small molecule inhibitor approaches, we also confirmed that G9a is the major methyltransferase to catalyze H3K27me1 for MMP-9-dependent H3NT proteolysis and trigger the expression of osteoclast-specific genes. Conclusions Our data establish new functions for G9a-mediated H3K27me1 in MMP-9-dependent H3NT proteolysis and demonstrate how histone modification can be exploited to regulate osteoclastogenic gene expression at the molecular level. Further studies are warranted to investigate the detailed mechanism by which G9a overexpression with concomitant dysregulation of osteoclastogenesis contributes to the pathogenesis of bone disorders. |
topic |
MMP-9 G9a H3 proteolysis H3K27me1 Osteoclast differentiation |
url |
http://link.springer.com/article/10.1186/s13072-018-0193-1 |
work_keys_str_mv |
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