Grzybowski Adrian T, Chen Zhonglei, Ruthenburg Alexander J
Department of Molecular Genetics and Cell Biology, The University of Chicago, 920 East 58th Street, Chicago, IL 60637, USA.
Department of Chemistry, The University of Chicago, 920 East 58th Street, Chicago, IL 60637, USA.
Mol Cell. 2015 Jun 4;58(5):886-99. doi: 10.1016/j.molcel.2015.04.022. Epub 2015 May 21.
Chromatin immunoprecipitation (ChIP) serves as a central experimental technique in epigenetics research, yet there are serious drawbacks: it is a relative measurement, which untethered to any external scale obscures fair comparison among experiments; it employs antibody reagents that have differing affinities and specificities for target epitopes that vary in abundance; and it is frequently not reproducible. To address these problems, we developed Internal Standard Calibrated ChIP (ICeChIP), wherein a native chromatin sample is spiked with nucleosomes reconstituted from recombinant and semisynthetic histones on barcoded DNA prior to immunoprecipitation. ICeChIP measures local histone modification densities on a biologically meaningful scale, enabling unbiased trans-experimental comparisons, and reveals unique insight into the nature of bivalent domains. This technology provides in situ assessment of the immunoprecipitation step, accommodating for many experimental pitfalls as well as providing a critical examination of untested assumptions inherent to conventional ChIP.
染色质免疫沉淀法(ChIP)是表观遗传学研究中的核心实验技术,但存在严重缺陷:它是一种相对测量方法,由于未与任何外部标准挂钩,使得不同实验之间难以进行公平比较;它使用的抗体试剂对丰度各异的靶表位具有不同的亲和力和特异性;而且该方法常常无法重复。为了解决这些问题,我们开发了内标校准染色质免疫沉淀法(ICeChIP),即在免疫沉淀之前,将由重组和半合成组蛋白在条形码DNA上重构的核小体添加到天然染色质样品中。ICeChIP能够在生物学上有意义的尺度上测量局部组蛋白修饰密度,实现无偏倚的跨实验比较,并揭示对双价结构域性质的独特见解。该技术可对免疫沉淀步骤进行原位评估,解决了许多实验中的陷阱,同时对传统ChIP中固有的未经检验的假设进行了批判性审视。