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通过实时PCR定量分析DNaseI敏感性:小鼠β-珠蛋白基因座控制区DNaseI超敏感性的定量分析

Quantification of DNaseI-sensitivity by real-time PCR: quantitative analysis of DNaseI-hypersensitivity of the mouse beta-globin LCR.

作者信息

McArthur M, Gerum S, Stamatoyannopoulos G

机构信息

Division of Medical Genetics, University of Washington, Seattle, 98195, USA.

出版信息

J Mol Biol. 2001 Oct 12;313(1):27-34. doi: 10.1006/jmbi.2001.4969.

Abstract

We employ real-time PCR to allow us to quantify the sensitivity of chromatin to digestion by DNaseI. This approach has three clear advantages over the more conventional use of the Southern hybridization assay: the accuracy of quantification is improved; the resolution of the assay is enhanced, by designing primers to amplify small amplicons it is possible to analyze sequences both co-incident and proximal to sites of DNaseI-hypersensitivity; less material is needed, as little as 5 ng of treated genomic DNA. We applied this method in an analysis of the chromatin structure of the previously described mouse beta-globin locus control region (LCR) using fetal liver cells. The four hypersensitive sites of the canonical mouse LCR, HS1 to HS4, are shown to have kinetics of digestion consistent with these sequences being nucleosome-free in vivo. A different pattern was seen for HS6, a recently described "weak" hypersensitive site. The site was also rapidly lost but more of the sites proved resistant, we interpreted this to show that this hypersensitive was only forming in a portion of the erythroid cells. This finding implies that in vivo the LCR is structurally heterogeneous. Sequences proximal to the hypersensitive sites show a third pattern of intermediate sensitivity, consistent with the chromatin being unfolded but the sites still bound by a continual nucleosomal array. Our results demonstrate that this method has the potential to achieve accurate and detailed mapping of chromatin structure from small amounts of tissue samples.

摘要

我们采用实时定量聚合酶链反应(real-time PCR)来量化染色质对脱氧核糖核酸酶I(DNaseI)消化的敏感性。与更传统的Southern杂交检测方法相比,这种方法具有三个明显的优点:提高了定量的准确性;通过设计引物扩增小的扩增子,增强了检测的分辨率,从而能够分析与DNaseI超敏位点重合及近端的序列;所需材料更少,仅需5纳克经处理的基因组DNA。我们将此方法应用于使用胎肝细胞对先前描述的小鼠β-珠蛋白基因座控制区(LCR)的染色质结构分析。经典小鼠LCR的四个超敏位点,HS1至HS4,显示出消化动力学,与这些序列在体内无核小体的情况一致。对于最近描述的“弱”超敏位点HS6,观察到了不同的模式。该位点也迅速消失,但更多的位点被证明具有抗性,我们将此解释为表明这种超敏仅在一部分红细胞中形成。这一发现意味着在体内LCR在结构上是异质的。超敏位点近端的序列显示出第三种中等敏感性模式,与染色质展开但位点仍被连续的核小体阵列结合一致。我们的结果表明,这种方法有潜力从小量组织样本中实现染色质结构的准确和详细图谱绘制。

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