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首页> 外文期刊>Journal of Genetics >Cold-induced alteration in the global structure of the male sex chromosome of In(1)BM2(reinverted) of Drosophila melanogaster is associated with increased acetylation of histone 4 at lysine 16
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Cold-induced alteration in the global structure of the male sex chromosome of In(1)BM2(reinverted) of Drosophila melanogaster is associated with increased acetylation of histone 4 at lysine 16

机译:冷诱导果蝇In(1)B M2 (恢复原状)雄性染色体整体结构的改变与赖氨酸16处组蛋白4的乙酰化增加有关

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摘要

In Drosophila melanogaster, dosage compensation occurs through hypertranscription of sex-linked genes in males. The hypertranscription involves acetylation of histone 4 at lysine 16 (H4K16) on amale X-chromosome, brought about by a histone acetyltransferase encoded by the dosage compensation gene, males absent on the first (mof). We report a phenomenon in the strain In(1)B M2 (reinverted) of D. melanogaster where the global structure of the male X-chromosome can be altered at the third instar larval stage through a 4-h cold shock at 12±1°C. We show that the cold shock results in a transient hyperacetylation of H4K16 and an increased expression of MOF. Control proteins H4 acetylated at lysine 5, and the dosage compensation gene msl-2, do not show any change in expression after cold shock. Cytology of the male X-chromosome at different time points during cold shock and recovery, suggests that the hyperacetylation of H4 at lysine 16 causes the X-chromosome to corkscrew into itself, thereby achieving the cold-induced change in the higher order structure of the male polytene X-chromosome. Our studies suggest a role for H4K16 in maintaining the structure of the male X-chromosome in Drosophila.
机译:在果蝇中,剂量补偿是通过雄性中与性相关的基因的超转录而发生的。过度转录涉及雄性X染色体上赖氨酸16(H4K16)处的组蛋白4的乙酰化,这是由剂量补偿基因编码的组蛋白乙酰转移酶引起的,第一个(mof)雄性不存在。我们报告了一种现象,在D. melanogaster的In(1)B M2 菌株(反向)中,雄性X染色体的整体结构可以在第三龄幼虫阶段通过4- h在12±1°C下冷冲击。我们表明,冷休克导致H4K16的瞬时过度乙酰化和MOF的表达增加。在冷休克后,在赖氨酸5处乙酰化的对照蛋白H4和剂量补偿基因msl-2的表达没有任何变化。男性X染色体在冷休克和恢复过程中不同时间点的细胞学研究表明,赖氨酸16处H4的过度乙酰化会导致X染色体开塞成螺旋形,从而实现了冷诱导的高阶结构变化。雄多烯X染色体。我们的研究表明H4K16在维持果蝇中男性X染色体的结构中具有作用。

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