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首页> 外文期刊>Nucleic Acids Research >Myc-induced anchorage of the rDNA IGS region to nucleolar matrix modulates growth-stimulated changes in higher-order rDNA architecture
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Myc-induced anchorage of the rDNA IGS region to nucleolar matrix modulates growth-stimulated changes in higher-order rDNA architecture

机译:Myc诱导的rDNA IGS区域对核仁基质的锚定调节了高阶rDNA结构中生长刺激的变化

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Chromatin domain organization and the compartmentalized distribution of chromosomal regions are essential for packaging of deoxyribonucleic acid (DNA) in the eukaryotic nucleus as well as regulated gene expression. Nucleoli are the most prominent morphological structures of cell nuclei and nucleolar organization is coupled to cell growth. It has been shown that nuclear scaffold/matrix attachment regions often define the base of looped chromosomal domains in vivo and that they are thereby critical for correct chromosome architecture and gene expression. Here, we show regulated organization of mammalian ribosomal ribonucleic acid genes into distinct chromatin loops by tethering to nucleolar matrix via the non-transcribed inter-genic spacer region of the ribosomal DNA (rDNA). The rDNA gene loop structures are induced specifically upon growth stimulation and are dependent on the activity of the c-Myc protein. Matrix-attached rDNA genes are hypomethylated at the promoter and are thus available for transcriptional activation. rDNA genes silenced by methylation are not recruited to the matrix. c-Myc, which has been shown to induce rDNA transcription directly, is physically associated with rDNA gene looping structures and the intergenic spacer sequence in growing cells. Such a role of Myc proteins in gene activation has not been reported previously.C1 Wright, Anthony P. H.; Karolinska Inst, Dept Lab Med, Clin Res Ctr KFC, SE-14186 Huddinge, SwedenSC Genetics & Heredity
机译:染色质域的组织和染色体区域的分区分布对于真核细胞中脱氧核糖核酸(DNA)的包装以及基因表达的调控至关重要。核仁是细胞核最突出的形态结构,核仁组织与细胞生长有关。已经显示,核支架/基质附着区通常在体内定义环状染色体结构域的碱基,因此它们对于正确的染色体结构和基因表达至关重要。在这里,我们展示了通过核糖体DNA(rDNA)的非转录基因间间隔区拴系到核仁基质,将哺乳动物核糖体核糖核酸基因调节到不同的染色质环。 rDNA基因环结构是在生长刺激后特异性诱导的,并取决于c-Myc蛋白的活性。附有基质的rDNA基因在启动子处被低甲基化,因此可用于转录激活。甲基化沉默的rDNA基因不会募集到基质中。已证明直接诱导rDNA转录的c-Myc与rDNA基因环结构和生长细胞中的基因间隔区序列物理相关。 Myc蛋白在基因激活中的这种作用以前没有被报道过。 Karolinska研究所,Dept Lab Med,Clin Res Ctr KFC,SE-14186 Huddinge,瑞典SC基因与遗传

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