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近交系小鼠之间染色质变异的原因和后果。

Causes and consequences of chromatin variation between inbred mice.

机构信息

Wellcome Trust Centre for Human Genetics, Oxford, UK.

出版信息

PLoS Genet. 2013 Jun;9(6):e1003570. doi: 10.1371/journal.pgen.1003570. Epub 2013 Jun 13.

Abstract

Variation at regulatory elements, identified through hypersensitivity to digestion by DNase I, is believed to contribute to variation in complex traits, but the extent and consequences of this variation are poorly characterized. Analysis of terminally differentiated erythroblasts in eight inbred strains of mice identified reproducible variation at approximately 6% of DNase I hypersensitive sites (DHS). Only 30% of such variable DHS contain a sequence variant predictive of site variation. Nevertheless, sequence variants within variable DHS are more likely to be associated with complex traits than those in non-variant DHS, and variants associated with complex traits preferentially occur in variable DHS. Changes at a small proportion (less than 10%) of variable DHS are associated with changes in nearby transcriptional activity. Our results show that whilst DNA sequence variation is not the major determinant of variation in open chromatin, where such variants exist they are likely to be causal for complex traits.

摘要

调控元件的变异,通过对 DNase I 消化的超敏反应来鉴定,被认为有助于复杂性状的变异,但这种变异的程度和后果还没有很好地描述。对 8 个近交系小鼠的终末分化红细胞的分析鉴定了大约 6%的 DNase I 超敏位点 (DHS) 的可重复的变异。只有 30%的这种可变 DHS 包含一个预测位点变异的序列变异。然而,可变 DHS 内的序列变异比非可变 DHS 内的更有可能与复杂性状相关,并且与复杂性状相关的变异优先发生在可变 DHS 中。在一小部分(小于 10%)可变 DHS 中的变化与附近转录活性的变化相关。我们的结果表明,虽然 DNA 序列变异不是开放染色质变异的主要决定因素,但在存在这种变异的情况下,它们很可能是复杂性状的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a64/3681629/91ed1a3a96ac/pgen.1003570.g001.jpg

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