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用于快速优化化学蛋白质-蛋白质交联反应的变性质量光度法。

Denaturing mass photometry for rapid optimization of chemical protein-protein cross-linking reactions.

作者信息

Gizardin-Fredon Hugo, Santo Paulo E, Chagot Marie-Eve, Charpentier Bruno, Bandeiras Tiago M, Manival Xavier, Hernandez-Alba Oscar, Cianférani Sarah

机构信息

Laboratoire de Spectrométrie de Masse BioOrganique, IPHC UMR 7178, Université de Strasbourg, CNRS, Strasbourg, France.

Infrastructure Nationale de Protéomique ProFI - FR2048, Strasbourg, France.

出版信息

Nat Commun. 2024 Apr 25;15(1):3516. doi: 10.1038/s41467-024-47732-4.

Abstract

Chemical cross-linking reactions (XL) are an important strategy for studying protein-protein interactions (PPIs), including low abundant sub-complexes, in structural biology. However, choosing XL reagents and conditions is laborious and mostly limited to analysis of protein assemblies that can be resolved using SDS-PAGE. To overcome these limitations, we develop here a denaturing mass photometry (dMP) method for fast, reliable and user-friendly optimization and monitoring of chemical XL reactions. The dMP is a robust 2-step protocol that ensures 95% of irreversible denaturation within only 5 min. We show that dMP provides accurate mass identification across a broad mass range (30 kDa-5 MDa) along with direct label-free relative quantification of all coexisting XL species (sub-complexes and aggregates). We compare dMP with SDS-PAGE and observe that, unlike the benchmark, dMP is time-efficient (3 min/triplicate), requires significantly less material (20-100×) and affords single molecule sensitivity. To illustrate its utility for routine structural biology applications, we show that dMP affords screening of 20 XL conditions in 1 h, accurately identifying and quantifying all coexisting species. Taken together, we anticipate that dMP will have an impact on ability to structurally characterize more PPIs and macromolecular assemblies, expected final complexes but also sub-complexes that form en route.

摘要

化学交联反应(XL)是结构生物学中研究蛋白质-蛋白质相互作用(PPI)的重要策略,包括低丰度亚复合物。然而,选择交联试剂和条件非常费力,并且大多限于对可通过SDS-PAGE解析的蛋白质组装体进行分析。为了克服这些限制,我们在此开发了一种变性质量光度法(dMP),用于快速、可靠且用户友好地优化和监测化学交联反应。dMP是一种稳健的两步法方案,仅需5分钟即可确保95%的不可逆变性。我们表明,dMP可在较宽的质量范围(30 kDa - 5 MDa)内提供准确的质量鉴定,并对所有共存的交联物种(亚复合物和聚集体)进行直接的无标记相对定量。我们将dMP与SDS-PAGE进行比较,发现与基准方法不同,dMP具有时间效率(每份样品3分钟),所需材料显著减少(20 - 100倍),并具有单分子灵敏度。为了说明其在常规结构生物学应用中的效用,我们表明dMP能够在1小时内筛选20种交联条件,准确鉴定和定量所有共存物种。综上所述,我们预计dMP将对更全面地表征更多PPI和大分子组装体的结构能力产生影响,不仅包括预期的最终复合物,还包括形成过程中的亚复合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0345/11045720/d2a58dedf731/41467_2024_47732_Fig1_HTML.jpg

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