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The active FMR1 promoter is associated with a large domain of altered chromatin conformation with embedded local histone modifications

机译:活跃的FMR1启动子与染色质构象改变的大结构域相关联,具有嵌入的局部组蛋白修饰

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摘要

We have analyzed the effects of gene activation on chromatin conformation throughout an approximate to 170-kb region comprising the human fragile X locus, which includes a single expressed gene, FMR1 (fragile X mental retardation 1). We have applied three approaches: (t) chromosome conformation capture, which assesses relative interaction frequencies of chromatin segments; (h) an extension of this approach that identifies domains whose conformation differs from the average, which we developed and named chromosome conformation profiling; and (M) ChIP analysis of histone modifications. We find that, in normal cells where FMR1 is active, the FMR1 promoter is at the center of a large (-50 kb) domain of reduced intersegment interactions. In contrast, in fragile X cells where FMR1 is inactive, chromatin conformation is uniform across the entire region. We also find that histone modifications that are characteristic of active genes occur tightly localized around the FMR1 promoter in normal cells and are absent in fragile X cells. Therefore, the expression-correlated change in conformation affects a significantly larger domain than that marked by histone modifications. Domain-wide changes in interaction probability could reflect increased chromatin expansion and may also be related to an altered spatial disposition that results in increased intermingling with unrelated loci. The described approaches are widely applicable to the study of conformational changes of any locus of interest.
机译:我们已经分析了基因激活对染色质构象的影响,遍及大约170 kb的区域,其中包括人类脆弱的X基因座,其中包括单个表达的基因FMR1(脆弱的X智力低下1)。我们应用了三种方法:(t)染色体构象捕获,它评估染色质片段的相对相互作用频率; (h)此方法的扩展,它可以识别构象与平均值不同的域,我们开发并命名为染色体构象图谱; (M)组蛋白修饰的ChIP分析。我们发现,在FMR1活跃的正常细胞中,FMR1启动子位于节段间相互作用减少的大(-50 kb)域的中心。相反,在FMR1处于非活动状态的脆弱X细胞中,染色质构象在整个区域内是均匀的。我们还发现,具有活性基因特征的组蛋白修饰紧密存在于正常细胞中的FMR1启动子周围,而在脆弱的X细胞中却不存在。因此,与表达相关的构象变化影响的域比组蛋白修饰所标记的域大得多。全域范围内相互作用概率的变化可能反映出染色质扩增的增加,也可能与空间布置的改变有关,从而导致与无关基因座的混杂增加。所描述的方法可广泛用于研究任何感兴趣基因座的构象变化。

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