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表观遗传学与新一代测序技术相遇。

Epigenetics meets next-generation sequencing.

作者信息

Park Peter J

机构信息

Harvard Medical School Center for Biomedical Informatics, Harvard-Partners Center for Genetics and Genomics, HST Informatics Program at Children's Hospital Boston, Boston, Massachusetts 02115, USA.

出版信息

Epigenetics. 2008 Nov;3(6):318-21. doi: 10.4161/epi.3.6.7249. Epub 2008 Nov 22.

Abstract

Next-generation sequencing is poised to unleash dramatic changes in every area of molecular biology. In the past few years, chromatin immunoprecipitation (ChIP) on tiled microarrays (ChIP-chip) has been an important tool for genome-wide mapping of DNA-binding proteins or histone modifications. Now, ChIP followed by direct sequencing of DNA fragments (ChIP-seq) offers superior data with less noise and higher resolution and is likely to replace ChIP-chip in the near future. We will describe advantages of this new technology and outline some of the issues in dealing with the data. ChIP-seq generates considerably larger quantities of data and the most challenging aspect for investigators will be computational and statistical analysis necessary to uncover biological insights hidden in the data.

摘要

新一代测序技术有望在分子生物学的各个领域引发巨大变革。在过去几年中,基于平铺式微阵列的染色质免疫沉淀技术(ChIP-chip)一直是全基因组范围内绘制DNA结合蛋白或组蛋白修饰图谱的重要工具。如今,DNA片段直接测序的染色质免疫沉淀技术(ChIP-seq)能提供噪声更低、分辨率更高的优质数据,且在不久的将来很可能取代ChIP-chip。我们将描述这项新技术的优势,并概述处理相关数据时的一些问题。ChIP-seq会产生数量大得多的数据,而对于研究人员来说,最具挑战性的方面将是进行计算和统计分析,以揭示隐藏在数据中的生物学见解。

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