Literature DB >> 33135541

A histone H3.3K36M mutation in mice causes an imbalance of histone modifications and defects in chondrocyte differentiation.

Shusaku Abe1, Hiroaki Nagatomo2,3, Hiroyuki Sasaki1, Takashi Ishiuchi1.   

Abstract

Histone lysine-to-methionine (K-to-M) mutations have been identified as driver mutations in human cancers. Interestingly, these 'oncohistone' mutations inhibit the activity of histone methyltransferases. Therefore, they can potentially be used as versatile tools to investigate the roles of histone modifications. In this study, we generated a genetically engineered mouse line in which an H3.3K36M mutation could be induced in the endogenous H3f3b gene. Since H3.3K36M has been identified as a causative mutation of human chondroblastoma, we induced this mutation in the chondrocyte lineage in mouse embryonic limbs. We found that H3.3K36M causes a global reduction in H3K36me2 and defects in chondrocyte differentiation. Importantly, the reduction of H3K36me2 was accompanied by a collapse of normal H3K27me3 distribution. Furthermore, the changes in H3K27me3, especially the loss of H3K27me3 at gene regulatory elements, were associated with the mis-regulated expression of a set of genes important for limb development, including HoxA cluster genes. Thus, through the in vivo induction of the H3.3K36M mutation, we reveal the importance of maintaining the balance between H3K36me2 and H3K27me3 during chondrocyte differentiation and limb development.

Entities:  

Keywords:  Histone modification; chondrocyte differentiation; oncohistone mutation; polycomb complex

Mesh:

Substances:

Year:  2020        PMID: 33135541      PMCID: PMC8510613          DOI: 10.1080/15592294.2020.1841873

Source DB:  PubMed          Journal:  Epigenetics        ISSN: 1559-2294            Impact factor:   4.528


  41 in total

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Authors:  Dong Fang; Haiyun Gan; Jeong-Heon Lee; Jing Han; Zhiquan Wang; Scott M Riester; Long Jin; Jianji Chen; Hui Zhou; Jinglong Wang; Honglian Zhang; Na Yang; Elizabeth W Bradley; Thai H Ho; Brian P Rubin; Julia A Bridge; Stephen N Thibodeau; Tamas Ordog; Yue Chen; Andre J van Wijnen; Andre M Oliveira; Rui-Ming Xu; Jennifer J Westendorf; Zhiguo Zhang
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10.  Depletion of Nsd2-mediated histone H3K36 methylation impairs adipose tissue development and function.

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Journal:  Front Cell Dev Biol       Date:  2021-04-16

3.  Histone H3K36me2 and H3K36me3 form a chromatin platform essential for DNMT3A-dependent DNA methylation in mouse oocytes.

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Review 4.  Mechanisms of Polycomb group protein function in cancer.

Authors:  Victoria Parreno; Anne-Marie Martinez; Giacomo Cavalli
Journal:  Cell Res       Date:  2022-01-19       Impact factor: 46.297

  4 in total

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