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通过光亲和标记和基于质谱的蛋白质组学研究FKBP12-雷帕霉素-FRB 三元复合物的结合位点热点图

A Binding Site Hotspot Map of the FKBP12-Rapamycin-FRB Ternary Complex by Photoaffinity Labeling and Mass Spectrometry-Based Proteomics.

机构信息

Department of Chemistry and Chemical Biology , Harvard University , 12 Oxford Street , Cambridge , Massachusetts 02138 , United States.

出版信息

J Am Chem Soc. 2019 Jul 31;141(30):11759-11764. doi: 10.1021/jacs.9b03764. Epub 2019 Jul 18.

Abstract

Structural characterization of small molecule binding site hotspots within the global proteome is uniquely enabled by photoaffinity labeling (PAL) coupled with chemical enrichment and unbiased analysis by mass spectrometry (MS). MS-based binding site maps provide structural resolution of interaction sites in conjunction with identification of target proteins. However, binding site hotspot mapping has been confined to relatively simple small molecules to date; extension to more complex compounds would enable the structural definition of new binding modes in the proteome. Here, we extend PAL and MS methods to derive a binding site hotspot map for the immunosuppressant rapamycin, a complex macrocyclic natural product that forms a ternary complex with the proteins FKBP12 and FRB. Photo-rapamycin was developed as a diazirine-based PAL probe for rapamycin, and the FKBP12-photo-rapamycin-FRB ternary complex formed readily in vitro. Photoirradiation, digestion, and MS analysis of the ternary complex revealed a McLafferty rearrangement product of photo-rapamycin conjugated to specific surfaces on FKBP12 and FRB. Molecular modeling based on the binding site map revealed two distinct conformations of complex-bound photo-rapamycin, providing a 5.0 Å distance constraint between the conjugated residues and the diazirine carbon and a 9.0 Å labeling radius for the diazirine upon photoactivation. These measurements may be broadly useful in the interpretation of binding site measurements from PAL. Thus, in characterizing the ternary complex of photo-rapamycin by MS, we applied binding site hotspot mapping to a macrocyclic natural product and extracted precise structural measurements for interpretation of PAL products that may enable the discovery of new binding sites in the "undruggable" proteome.

摘要

通过光亲和标记(PAL)与化学富集相结合,并通过质谱(MS)进行无偏分析,可唯一实现对全球蛋白质组中小分子结合位点热点的结构表征。基于 MS 的结合位点图谱提供了相互作用位点的结构分辨率,并结合了靶蛋白的鉴定。然而,迄今为止,结合位点热点图的绘制仅限于相对简单的小分子;将其扩展到更复杂的化合物,将能够在蛋白质组中定义新的结合模式的结构。在这里,我们扩展了 PAL 和 MS 方法,以得出免疫抑制剂雷帕霉素的结合位点热点图,雷帕霉素是一种复杂的大环天然产物,与 FKBP12 和 FRB 蛋白形成三元复合物。开发了一种基于重氮甲烷的 PAL 探针 photo-rapamycin 用于雷帕霉素,并且 FKBP12-photo-rapamycin-FRB 三元复合物很容易在体外形成。对三元复合物进行光辐照、消化和 MS 分析,揭示了 photo-rapamycin 与 FKBP12 和 FRB 上特定表面的 McLafferty 重排产物。基于结合位点图谱的分子建模揭示了复合物结合的 photo-rapamycin 的两种不同构象,在光激活时在共轭残基和重氮甲烷碳之间提供了 5.0 Å 的距离约束,并且在 diazirine 上提供了 9.0 Å 的标记半径。这些测量结果可能在解释 PAL 产物的结合位点测量中具有广泛的用途。因此,通过 MS 对 photo-rapamycin 的三元复合物进行特征描述时,我们将结合位点热点图应用于大环天然产物,并提取了精确的结构测量值,用于解释 PAL 产物,这可能使我们能够在“不可成药”的蛋白质组中发现新的结合位点。

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