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小鼠牙齿发育过程中H3K9组蛋白甲基转移酶的协同表达。

Coordinated expression of H3K9 histone methyltransferases during tooth development in mice.

作者信息

Kamiunten Taichi, Ideno Hisashi, Shimada Akemi, Nakamura Yoshiki, Kimura Hiroshi, Nakashima Kazuhisa, Nifuji Akira

机构信息

Department of Pharmacology, Tsurumi University School of Dental Medicine, 2-1-3 Tsurumi, Tsurumi-ku, Yokohama, 230-8501, Japan.

出版信息

Histochem Cell Biol. 2015 Mar;143(3):259-66. doi: 10.1007/s00418-014-1284-0. Epub 2014 Oct 8.

Abstract

Tissue-specific gene expression is subjected to epigenetic and genetic regulation. Posttranslational modifications of histone tails alter the accessibility of nuclear proteins to DNA, thus affecting the activity of the regulatory complex of nuclear proteins. Methylation at histone 3 lysine 9 (H3K9) is a crucial modification that affects gene expression and cell differentiation. H3K9 is known to have 0-3 methylation states, and these four methylated states are determined by the expression of sets of histone methyltransferases. During development, teeth are formed through mutual interactions between the mesenchyme and epithelium via a process that is subjected to the epigenetic regulation. In this study, we examined the expression of all H3K9 methyltransferases (H3K9MTases) during mouse tooth development. We found that four H3K9MTases-G9a, Glp, Prdm2, and Suv39h1-were highly expressed in the tooth germ, with expression peaks at around embryonic days 16.5 and 17.5 in mice. Immunohistochemical and in situ hybridization analyses revealed that all four H3K9MTases were enriched in the mesenchyme more than in the epithelium. Substrates of H3K9MTases, H3K9me1, H3K9me2, and H3K9me3 were also enriched in the mesenchyme. Taken together, these data suggested that coordinated expression of four H3K9MTases in the dental mesenchyme might play important roles in tooth development.

摘要

组织特异性基因表达受到表观遗传和遗传调控。组蛋白尾部的翻译后修饰会改变核蛋白与DNA的可及性,从而影响核蛋白调节复合物的活性。组蛋白3赖氨酸9(H3K9)的甲基化是一种影响基因表达和细胞分化的关键修饰。已知H3K9有0至3种甲基化状态,这四种甲基化状态由组蛋白甲基转移酶的表达决定。在发育过程中,牙齿通过间充质和上皮之间的相互作用形成,这一过程受到表观遗传调控。在本研究中,我们检测了小鼠牙齿发育过程中所有H3K9甲基转移酶(H3K9MTases)的表达。我们发现四种H3K9MTases——G9a、Glp、Prdm2和Suv39h1——在牙胚中高表达,在小鼠胚胎第16.5天和17.5天左右达到表达峰值。免疫组织化学和原位杂交分析显示,所有四种H3K9MTases在间充质中的富集程度高于上皮。H3K9MTases的底物H3K9me1、H3K9me2和H3K9me3也在间充质中富集。综上所述,这些数据表明牙齿间充质中四种H3K9MTases的协同表达可能在牙齿发育中起重要作用。

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