染色质
计算生物学
生物
基因组
核糖核酸
DNA
DNA测序
多细胞生物
细胞
转录因子
遗传学
基因
作者
Owen J. Marshall,Tony D. Southall,Seth W. Cheetham,Andrea H. Brand
出处
期刊:Nature Protocols
[Springer Nature]
日期:2016-08-04
卷期号:11 (9): 1586-1598
被引量:120
标识
DOI:10.1038/nprot.2016.084
摘要
Targeted DamID (TaDa) extends DamID to enable cell-type-specific profiling of genome-wide protein binding. Transcription factor binding sites, RNA Pol II occupancy and chromatin states can be studied to provide insights into cell-fate specification. This protocol is an extension to: , 1467–1478 (2007); doi:10.1038/nprot.2007.148; published online 7 June 2007 The ability to profile transcription and chromatin binding in a cell-type-specific manner is a powerful aid to understanding cell-fate specification and cellular function in multicellular organisms. We recently developed targeted DamID (TaDa) to enable genome-wide, cell-type-specific profiling of DNA- and chromatin-binding proteins in vivo without cell isolation. As a protocol extension, this article describes substantial modifications to an existing protocol, and it offers additional applications. TaDa builds upon DamID, a technique for detecting genome-wide DNA-binding profiles of proteins, by coupling it with the GAL4 system in Drosophila to enable both temporal and spatial resolution. TaDa ensures that Dam-fusion proteins are expressed at very low levels, thus avoiding toxicity and potential artifacts from overexpression. The modifications to the core DamID technique presented here also increase the speed of sample processing and throughput, and adapt the method to next-generation sequencing technology. TaDa is robust, reproducible and highly sensitive. Compared with other methods for cell-type-specific profiling, the technique requires no cell-sorting, cross-linking or antisera, and binding profiles can be generated from as few as 10,000 total induced cells. By profiling the genome-wide binding of RNA polymerase II (Pol II), TaDa can also identify transcribed genes in a cell-type-specific manner. Here we describe a detailed protocol for carrying out TaDa experiments and preparing the material for next-generation sequencing. Although we developed TaDa in Drosophila, it should be easily adapted to other organisms with an inducible expression system. Once transgenic animals are obtained, the entire experimental procedure—from collecting tissue samples to generating sequencing libraries—can be accomplished within 5 d.
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