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Fully automated high-throughput chromatin immunoprecipitation for ChIP-seq: Identifying ChIP-quality p300 monoclonal antibodies

机译:ChIP-seq的全自动高通量染色质免疫沉淀:鉴定ChIP质量的p300单克隆抗体

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摘要

Chromatin immunoprecipitation coupled with DNA sequencing (ChIP-seq) is the major contemporary method for mapping in vivo protein-DNA interactions in the genome. It identifies sites of transcription factor, cofactor and RNA polymerase occupancy, as well as the distribution of histone marks. Consortia such as the ENCyclopedia Of DNA Elements (ENCODE) have produced large datasets using manual protocols. However, future measurements of hundreds of additional factors in many cell types and physiological states call for higher throughput and consistency afforded by automation. Such automation advances, when provided by multiuser facilities, could also improve the quality and efficiency of individual small-scale projects. The immunoprecipitation process has become rate-limiting, and is a source of substantial variability when performed manually. Here we report a fully automated robotic ChIP (R-ChIP) pipeline that allows up to 96 reactions. A second bottleneck is the dearth of renewable ChIP-validated immune reagents, which do not yet exist for most mammalian transcription factors. We used R-ChIP to screen new mouse monoclonal antibodies raised against p300, a histone acetylase, well-known as a marker of active enhancers, for which ChIP-competent monoclonal reagents have been lacking. We identified, validated for ChIP-seq, and made publicly available a monoclonal reagent called ENCITp300-1.
机译:染色质免疫沉淀与DNA测序(ChIP-seq)结合是在基因组中绘制体内蛋白质-DNA相互作用的主要现代方法。它可以识别转录因子,辅因子和RNA聚合酶的占有率,以及组蛋白标记的分布。诸如DNA元素百科全书(ENCODE)之类的联合会已使用手动协议生成了大型数据集。但是,未来对许多细胞类型和生理状态中数百种其他因子的测量要求自动化提供更高的通量和一致性。当由多用户设施提供时,这种自动化的进步还可以提高单个小型项目的质量和效率。免疫沉淀过程已成为速率限制,并且在手动进行时是大量变异的来源。在这里,我们报告了全自动的ChIP(R-ChIP)机器人流水线,最多可进行96个反应。第二个瓶颈是缺乏可再生的经过ChIP验证的免疫试剂,对于大多数哺乳动物转录因子而言,这种试剂还不存在。我们使用R-ChIP筛选针对p300的新型小鼠单克隆抗体,p300是一种组蛋白乙酰化酶,众所周知,它是活性增强剂的标志物,而缺少ChIP的单克隆试剂。我们鉴定并验证了ChIP-seq,并公开提供了一种称为ENCITp300-1的单克隆试剂。

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