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The Drosophila G9a gene encodes a multi-catalytic histone methyltransferase required for normal development

机译:果蝇G9a基因编码正常发育所需的多催化组蛋白甲基转移酶

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Mammalian G9a is a histone H3 Lys-9 (H3-K9) methyltransferase localized in euchromatin and acts as a co-regulator for specific transcription factors. G9a is required for proper development in mammals as g9a(-)/g9a(-) mice show growth retardation and early lethality. Here we describe the cloning, the biochemical and genetical analyses of the Drosophila homolog dG9a. We show that dG9a shares the structural organization of mammalian G9a, and that it is a multi-catalytic histone methyltransferase with specificity not only for lysines 9 and 27 on H3 but also for H4. Surprisingly, it is not the H4-K20 residue that is the target for this methylation. Spatiotemporal expression analyses reveal that dG9a is abundantly expressed in the gonads of both sexes, with no detectable expression in gonadectomized adults. In addition we find a low but clearly observable level of dG9a transcript in developing embryos, larvae and pupae. Genetic and RNAi experiments reveal that dG9a is involved in ecdysone regulatory pathways.
机译:哺乳动物G9a是一种定位在常染色质中的组蛋白H3 Lys-9(H3-K9)甲基转移酶,可作为特定转录因子的共调节剂。 G9a是哺乳动物中正常发育所必需的,因为g9a(-)/ g9a(-)小鼠显示出发育迟缓和早期致死性。在这里我们描述了果蝇同系物dG9a的克隆,生化和遗传分析。我们显示dG9a共享哺乳动物G9a的结构组织,并且它是一种多催化组蛋白甲基转移酶,不仅对H3的赖氨酸9和27具有特异性,而且对H4具特异性。令人惊讶的是,不是甲基化的目标是H4-K20残基。时空表达分析表明,dG9a在男女的性腺中大量表达,在经过性腺切除的成年人中未检测到表达。此外,我们发现发育中的胚胎,幼虫和p中的dG9a转录物水平较低,但可观察到。遗传和RNAi实验表明dG9a参与蜕皮激素的调节途径。

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