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化学变性和蛋白沉淀法用于发现和定量药物与蛋白相互作用。

Chemical Denaturation and Protein Precipitation Approach for Discovery and Quantitation of Protein-Drug Interactions.

机构信息

Department of Chemistry , Duke University , Durham , North Carolina 27708 , United States.

出版信息

Anal Chem. 2018 Aug 7;90(15):9249-9255. doi: 10.1021/acs.analchem.8b01772. Epub 2018 Jul 24.

DOI:10.1021/acs.analchem.8b01772
PMID:29995387
Abstract

Described here is a mass spectrometry-based proteomics approach for the large-scale analysis of protein-drug interactions. The approach involves the evaluation of ligand-induced protein folding free energy changes (ΔΔ G) using chemical denaturation and protein precipitation (CPP) to identify the protein targets of drugs and to quantify protein-drug binding affinities. This is accomplished in a chemical denaturant-induced unfolding experiment where the folded and unfolded protein fractions in each denaturant containing buffer are quantified by the amount of soluble or precipitated protein (respectively) that forms upon abrupt dilution of the chemical denaturant and subsequent centrifugation of the sample. In the proof-of-principle studies performed here, the CPP technique was able to identify the well-known protein targets of cyclosporin A and geldanamycin in a yeast. The technique was also used to identify protein targets of sinefungin, a broad-based methyltransferase inhibitor, in a human MCF-7 cell lysate. The CPP technique also yielded dissociation constant ( K) measurements for these well-studied drugs that were in general agreement with previously reported K or IC values. In comparison to a similar energetics-based technique, termed stability of proteins from rates of oxidation (SPROX), the CPP technique yielded significantly better (∼50% higher) proteomic coverage and a largely reduced false discovery rate.

摘要

这里描述的是一种基于质谱的蛋白质组学方法,用于大规模分析蛋白质-药物相互作用。该方法涉及使用化学变性和蛋白质沉淀(CPP)评估配体诱导的蛋白质折叠自由能变化(ΔΔG),以鉴定药物的蛋白质靶标并定量蛋白质-药物结合亲和力。这是通过化学变性诱导的展开实验来实现的,其中在每种含变性剂的缓冲液中折叠和未折叠的蛋白质部分通过在化学变性剂突然稀释后形成的可溶性或沉淀蛋白质(分别)的量来定量,随后对样品进行离心。在本文进行的原理验证研究中,CPP 技术能够鉴定环孢菌素 A 和 geldanamycin 在酵母中的众所周知的蛋白质靶标。该技术还用于鉴定广谱甲基转移酶抑制剂 sinefungin 在人 MCF-7 细胞裂解物中的蛋白质靶标。CPP 技术还为这些经过充分研究的药物提供了离解常数(K)测量值,这些值与先前报道的 K 或 IC 值基本一致。与一种类似的基于能量的技术,即氧化蛋白稳定性比(SPROX)相比,CPP 技术产生了显著更高的(约高 50%)蛋白质组覆盖率和大大降低的假阳性率。

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