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Affi-BAMS™:一种强大的靶向蛋白质组学微阵列平台,用于测量组蛋白翻译后修饰。

Affi-BAMS™: A Robust Targeted Proteomics Microarray Platform to Measure Histone Post-Translational Modifications.

机构信息

Discovery Biology, Discovery Sciences, R&D, AstraZeneca, Boston, MA 02451, USA.

Molecular, Cellular and Biomedical Sciences, University of New Hampshire, Durham, NH 03824, USA.

出版信息

Int J Mol Sci. 2023 Jun 13;24(12):10060. doi: 10.3390/ijms241210060.

Abstract

For targeted protein panels, the ability to specifically assay post-translational modifications (PTMs) in a quantitative, sensitive, and straightforward manner would substantially advance biological and pharmacological studies. The present study highlights the effectiveness of the Affi-BAMS™ epitope-directed affinity bead capture/MALDI MS platform for quantitatively defining complex PTM marks of H3 and H4 histones. Using H3 and H4 histone peptides and isotopically labelled derivatives, this affinity bead and MALDI MS platform achieves a range of >3 orders of magnitude with a technical precision CV of <5%. Using nuclear cellular lysates, Affi-BAMS PTM-peptide capture resolves heterogeneous histone N-terminal PTMs with as little as 100 µg of starting material. In an HDAC inhibitor and MCF7 cell line model, the ability to monitor dynamic histone H3 acetylation and methylation events is further demonstrated (including SILAC quantification). Affi-BAMS (and its capacity for the multiplexing of samples and target PTM-proteins) thus provides a uniquely efficient and effective approach for analyzing dynamic epigenetic histone marks, which is critical for the regulation of chromatin structure and gene expression.

摘要

对于靶向蛋白质组学而言,如果能够以定量、灵敏和直接的方式专门检测翻译后修饰(PTMs),则将极大地推进生物学和药理学研究。本研究重点介绍了 Affi-BAMS™表位定向亲和珠捕获/MALDI MS 平台在定量定义 H3 和 H4 组蛋白复杂 PTM 标记方面的有效性。该亲和珠和 MALDI MS 平台使用 H3 和 H4 组蛋白肽和同位素标记的衍生物,实现了 >3 个数量级的范围,技术精度 CV<5%。使用核细胞裂解物,Affi-BAMS PTM-肽捕获可在起始材料低至 100µg 的情况下解析异质组蛋白 N 端 PTM。在 HDAC 抑制剂和 MCF7 细胞系模型中,进一步证明了监测动态组蛋白 H3 乙酰化和甲基化事件的能力(包括 SILAC 定量)。因此,Affi-BAMS(及其对样品和靶标 PTM-蛋白进行多重化的能力)为分析动态表观遗传组蛋白标记提供了一种独特的高效方法,这对于调节染色质结构和基因表达至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6914/10298961/8c63521e9918/ijms-24-10060-g001.jpg

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