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Regulation of Histone H4 Lys16 Acetylation by Predicted Alternative Secondary Structures in roX Noncoding RNAs

机译:在roX非编码RNA中预测的替代二级结构调控组蛋白H4 Lys16乙酰化。

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摘要

Despite differences in size and sequence, the two noncoding roX1 and roX2 RNAs are functionally redundant for dosage compensation of the Drosophila melanogaster male X chromosome. Consistent with functional conservation, we found that roX RNAs of distant Drosophila species could complement D. melanogaster roX mutants despite low homology. Deletion of a conserved predicted stem-loop structure in roX2, containing a short GUb (GUUNUACG box) in its 3′ stem, resulted in a defect in histone H4K16 acetylation on the X chromosome in spite of apparently normal localization of the MSL complex. Two copies of the GUb sequence, newly termed the “roX box,” were functionally redundant in roX2, as mutants in a single roX box had no phenotype, but double mutants showed reduced H4K16 acetylation. Interestingly, mutation of two of three roX boxes in the 3′ end of roX1 RNA also reduced H4K16 acetylation. Finally, fusion of roX1 sequences containing a roX box restored function to a roX2 deletion RNA lacking its cognate roX box. These results support a model in which the functional redundancy between roX1 and roX2 RNAs is based, at least in part, on short GUUNUACG sequences that regulate the activity of the MSL complex.
机译:尽管大小和序列不同,但两个非编码roX1和roX2 RNA在功能上对于果蝇X染色体雄性X染色体的剂量补偿是多余的。与功能保守性一致,我们发现尽管同源性很低,但远处果蝇物种的roX RNA可以补充D. melanogaster roX突变体。 roX2中保守的预测茎-环结构的缺失,在其3'茎中包含一个短GUb(GUUNUACG框),尽管MSL复合物明显处于正常定位,但仍导致X染色体上的组蛋白H4K16乙酰化缺陷。 GUb序列的两个副本(新称为“ roX框”)在roX2中功能上是多余的,因为单个roX框中的突变体没有表型,但双重突变体显示出H4K16乙酰化程度降低。有趣的是,roX1 RNA 3'末端的三个roX盒中有两个发生了突变,也减少了H4K16的乙酰化。最后,含有roX box的roX1序列融合体恢复了功能缺失的roX2缺失RNA的roX2缺失RNA。这些结果支持一种模型,其中roX1和roX2 RNA之间的功能冗余至少部分基于调节MSL复合物活性的短GUUNUACG序列。

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