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EZH1 and EZH2 promote skeletal growth by repressing inhibitors of chondrocyte proliferation and hypertrophy

机译:EZH1和EZH2通过抑制软骨细胞增殖和肥大的抑制剂来促进骨骼生长

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摘要

Histone methyltransferases EZH1 and EZH2 catalyse the trimethylation of histone H3 at lysine 27 (H3K27), which serves as an epigenetic signal for chromatin condensation and transcriptional repression. Genome-wide associated studies have implicated EZH2 in the control of height and mutations in EZH2 cause Weaver syndrome, which includes skeletal overgrowth. Here we show that the combined loss of Ezh1 and Ezh2 in chondrocytes severely impairs skeletal growth in mice. Both of the principal processes underlying growth plate chondrogenesis, chondrocyte proliferation and hypertrophy, are compromised. The decrease in chondrocyte proliferation is due in part to derepression of cyclin-dependent kinase inhibitors Ink4a/b, while ineffective chondrocyte hypertrophy is due to the suppression of IGF signalling by the increased expression of IGF-binding proteins. Collectively, our findings reveal a critical role for H3K27 methylation in the regulation of chondrocyte proliferation and hypertrophy in the growth plate, which are the central determinants of skeletal growth.
机译:组蛋白甲基转移酶EZH1和EZH2催化赖氨酸27(H3K27)上组蛋白H3的三甲基化,这是染色质浓缩和转录抑制的表观遗传信号。全基因组相关研究表明,EZH2的高度控制和EZH2突变引起Weaver综合征,其中包括骨骼过度生长。在这里,我们显示软骨细胞中Ezh1和Ezh2的联合损失严重损害了小鼠的骨骼生长。生长板软骨形成,软骨细胞增殖和肥大的两个主要过程均受到损害。软骨细胞增殖的减少部分归因于细胞周期蛋白依赖性激酶抑制剂Ink4a / b的抑制,而无效的软骨细胞肥大归因于IGF结合蛋白表达的增加对IGF信号的抑制。总的来说,我们的发现揭示了H3K27甲基化在调节生长板中软骨细胞增殖和肥大中的关键作用,这是骨骼生长的关键决定因素。

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