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通过反相蛋白阵列对组蛋白翻译后修饰和染色质修饰蛋白进行高通量分析。

High-throughput profiling of histone post-translational modifications and chromatin modifying proteins by reverse phase protein array.

机构信息

Advanced Technology Cores, Baylor College of Medicine, Houston, TX, USA.

Advanced Technology Cores, Baylor College of Medicine, Houston, TX, USA; Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, TX, USA; Dan L. Duncan Comprehensive Cancer Center, Baylor College of Medicine, Houston, TX, USA.

出版信息

J Proteomics. 2022 Jun 30;262:104596. doi: 10.1016/j.jprot.2022.104596. Epub 2022 Apr 27.

Abstract

Epigenetic variation plays a significant role in normal development and human diseases including cancer, in part through post-translational modifications (PTMs) of histones. Identification and profiling of changes in histone PTMs, and in proteins regulating PTMs, are crucial to understanding diseases, and for discovery of epigenetic therapeutic agents. In this study, we have adapted and validated an antibody-based reverse phase protein array (RPPA) platform for profiling 20 histone PTMs and expression of 40 proteins that modify histones and other epigenomic regulators. The specificity of the RPPA assay for histone PTMs was validated with synthetic peptides corresponding to histone PTMs and by detection of histone PTM changes in response to inhibitors of histone modifier proteins in cell cultures. The useful application of the RPPA platform was demonstrated with two models: induction of pluripotent stem cells and a mouse mammary tumor progression model. Described here is a robust platform that includes a rapid microscale method for histone isolation and partially automated workflows for analysis of histone PTMs and histone modifiers that can be performed in a high-throughput manner with hundreds of samples. This RPPA platform has potential for translational applications through the discovery and validation of epigenetic states as therapeutic targets and biomarkers. SIGNIFICANCE: Our study has established an antibody-based reverse phase protein array platform for global profiling of a wide range of post-translational modifications of histones and histone modifier proteins. The high-throughput platform provides comprehensive analyses of epigenetics for biological research and disease studies and may serve as screening assay for diagnostic purpose or therapy development.

摘要

表观遗传变异在正常发育和人类疾病中(包括癌症)起着重要作用,部分原因是通过组蛋白的翻译后修饰(PTMs)。鉴定和分析组蛋白 PTM 以及调节 PTM 的蛋白质的变化对于理解疾病以及发现表观遗传治疗剂至关重要。在这项研究中,我们已经适应并验证了一种基于抗体的反相蛋白阵列(RPPA)平台,用于分析 20 种组蛋白 PTM 以及 40 种修饰组蛋白和其他表观遗传调节剂的蛋白质的表达。使用与组蛋白 PTM 对应的合成肽以及通过检测细胞培养物中组蛋白修饰蛋白抑制剂对组蛋白 PTM 变化的反应,验证了 RPPA 测定法用于组蛋白 PTM 的特异性。该 RPPA 平台的有用应用通过两个模型得到了证明:多能干细胞的诱导和小鼠乳腺肿瘤进展模型。本文描述了一种强大的平台,该平台包括一种快速的微尺度组蛋白分离方法和部分自动化的分析工作流程,可用于高通量处理数百个样本的组蛋白 PTM 和组蛋白修饰物的分析。该 RPPA 平台具有作为治疗靶点和生物标志物发现和验证表观遗传状态的转化应用潜力。意义:我们的研究建立了一种基于抗体的反相蛋白阵列平台,用于广泛分析组蛋白和组蛋白修饰蛋白的各种翻译后修饰。该高通量平台为生物学研究和疾病研究提供了全面的表观遗传学分析,并且可以作为诊断目的或治疗开发的筛选测定。

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