A post-translational modification cascade employing HDAC9-PIASy-RNF4 axis regulates chondrocyte hypertrophy by modulating Nkx3.2 protein stability

被引:16
作者
Choi, Hye-Jeong [1 ]
Kwon, Seongran [1 ]
Kim, Dae-Won [1 ]
机构
[1] Yonsei Univ, Dept Biochem, Seoul, South Korea
关键词
Cartilage Development; HDAC9; Nkx3.2; Acetylation-dependent sumoylation; Sumoylation-dependent ubiquitination; TARGETED UBIQUITIN LIGASE; HISTONE DEACETYLASES HDACS; INDIAN HEDGEHOG; SOMITIC CHONDROGENESIS; TRANSCRIPTION FACTOR; NONHISTONE PROTEINS; SMAD7; STABILITY; DNA-DAMAGE; ACETYLATION; SUMO;
D O I
10.1016/j.cellsig.2016.06.006
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
While Nkx3.2/Bapx1 promotes chondrogenic differentiation and plays a role in maintaining chondrocyte viability and suppressing chondrocyte hypertrophy, the regulatory mechanisms of Nkx3.2 remain poorly understood. Here we show that p300- and HDAC9-induced Nkx3.2 acetylation and de-acetylation, respectively, play critical roles in controlling Nkx3.2 protein stability. In addition, we also found that HDAC9-dependent de-acetylation of Nkx3.2 triggers PIASy-mediated sumoylation and subsequent RNF4-mediated SUMO-targeted ubiquitination. Furthermore, we demonstrate that Nkx3.2 regulation by HDAC9 can be linked to the management of chondrocyte survival and hypertrophic maturation during cartilage development. Finally, our results together reveal a novel mechanism of protein stability control involving complex interplay between acetylation, de-acetylation, sumoylation, and ubiquitination, and suggest that this post-translational modification of Nkx3.2 employing HDAC9-PIASy-RNF4 axis plays a crucial role in controlling chondrocyte viability and hypertrophic maturation during skeletal development in vertebrates. (C) 2016 Elsevier Inc. All rights reserved.
引用
收藏
页码:1336 / 1348
页数:13
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