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果蝇dMBD2/3在基因组激活过程中的阶段特异性染色体关联。

Stage-specific chromosomal association of Drosophila dMBD2/3 during genome activation.

作者信息

Marhold Joachim, Zbylut Marcin, Lankenau Dirk-Henner, Li Mingfa, Gerlich Daniel, Ballestar Esteban, Mechler Bernard M, Lyko Frank

机构信息

Research Group Epigenetics, Deutsches Krebsforschungszentrum, Heidelberg, Germany.

出版信息

Chromosoma. 2002 Mar;111(1):13-21. doi: 10.1007/s00412-002-0188-2.

Abstract

The Drosophila gene dMBD2/3 encodes a protein with significant homologies to the mammalian methyl-DNA binding proteins MBD2 and MBD3. These proteins are essential components of chromatin complexes involved in epigenetic gene regulation. Because the available in vitro data on dMBD2/3 are conflicting we have started an in vivo characterization of dMBD2/3. We detected expression of two isoforms specifically during embryonic development. Staining of whole embryos combined with high-resolution confocal microscopy revealed a highly regulated spatial distribution. During the syncytial blastoderm stage, dMBD2/3 formed speckles that localized to the cytoplasm. Shortly after, during the cellular blastoderm stage, the protein entered the nucleus and formed bright foci that associated with DNA. This rapid transition coincided with the activation of the embryonic genome. A similar observation was made during activation of the spermatocyte genome as dMBD2/3 formed distinct foci associated with the activated Y chromosome. Our results indicate that dMBD2/3 forms specialized nuclear compartments to keep certain genes epigenetically silenced during genome activation.

摘要

果蝇基因dMBD2/3编码一种与哺乳动物甲基化DNA结合蛋白MBD2和MBD3具有显著同源性的蛋白质。这些蛋白质是参与表观遗传基因调控的染色质复合物的重要组成部分。由于现有的关于dMBD2/3的体外数据相互矛盾,我们开始对dMBD2/3进行体内特性分析。我们检测到两种异构体在胚胎发育过程中特异性表达。对整个胚胎进行染色并结合高分辨率共聚焦显微镜观察,发现其空间分布受到高度调控。在合胞体胚盘阶段,dMBD2/3形成斑点并定位于细胞质。此后不久,在细胞胚盘阶段,该蛋白质进入细胞核并形成与DNA相关的明亮焦点。这种快速转变与胚胎基因组的激活同时发生。在精母细胞基因组激活过程中也有类似观察结果,因为dMBD2/3形成了与激活的Y染色体相关的独特焦点。我们的结果表明,dMBD2/3形成特殊的核区室,以便在基因组激活过程中使某些基因在表观遗传上保持沉默。

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