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快速固定和全面鉴定,有助于提高基于甲醛交联、免疫沉淀和 SDS-PAGE 分离的实时配体发现。

Fast fixing and comprehensive identification to help improve real-time ligands discovery based on formaldehyde crosslinking, immunoprecipitation and SDS-PAGE separation.

机构信息

Department of Physiology and Pathophysiology, National Key Laboratory of Medical Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences, Peking Union Medical College, Beijing 100005, China.

出版信息

Proteome Sci. 2014 Feb 1;12(1):6. doi: 10.1186/1477-5956-12-6.

Abstract

BACKGROUND

Fast Fixation is necessary to study real-time protein-protein interactions under physiological conditions. Fast formaldehyde cross-linking can fix transient and weak protein interactions, thereby reducing the number of false negatives but producing great complexity. To reduce this complexity, immunoaffinity purification can Fish out complexes that include particular target proteins, but affinity-based co-purification has a limited capacity to eliminate nonspecific binding to beads and/or antibodies. To Filter out these complexes, SDS-PAGE is used to disrupt non-covalent bonds, thereby eliminating uncross-linked complexes and simultaneously providing molecular weight information for identification.

RESULTS

We described a 4 F strategy to help improve real-time ligands discovery based on formaldehyde crosslinking, immunoprecipitation and SDS-PAGE separation: Fast Fix, Fish, and Filter, using albumin interactome as an example. The use of gel excision without staining makes this strategy comprehensive and sensitive. The target protein must be identified in the same slice as its ligands. The ligands must be identified in slices for the experimental group but not in the corresponding control slices. Only proteins that appear in the range of molecular weights equal to or greater than the sum of the proteins' theoretical molecular weights, together with the target, are considered ligands. In this study, 5 s of cross-linking with 10% formaldehyde was achieved in human blood. The use of this strategy identified 35 ligands for albumin. Comparison with four major previous studies of the albuminome revealed that 68.57% of the 35 ligands identified in our study were identified in these other studies.

CONCLUSIONS

Fast cross-linking was achieved. The 4 F strategy can be used to identify real-time in situ interactions without prior intervention and to comprehensively identify ligands of particular target proteins with fewer false positives.

摘要

背景

快速固定对于在生理条件下研究实时蛋白质-蛋白质相互作用是必要的。快速甲醛交联可以固定瞬时和弱的蛋白质相互作用,从而减少假阴性的数量,但会产生很大的复杂性。为了降低这种复杂性,可以通过免疫亲和纯化来钓出包含特定靶蛋白的复合物,但基于亲和力的共纯化对消除非特异性结合到珠子和/或抗体的能力有限。为了筛选出这些复合物,可以使用 SDS-PAGE 来破坏非共价键,从而消除未交联的复合物,同时为鉴定提供分子量信息。

结果

我们描述了一种 4F 策略,以帮助改进基于甲醛交联、免疫沉淀和 SDS-PAGE 分离的实时配体发现:快速固定、钓出和筛选,以白蛋白互作组作为示例。使用不染色的凝胶切胶使得该策略全面且敏感。靶蛋白必须与其配体在同一切片中被鉴定。配体必须在实验组的切片中被鉴定,但不在相应的对照切片中被鉴定。只有在分子量范围等于或大于蛋白质理论分子量之和的范围内出现的蛋白质,以及靶蛋白,才被认为是配体。在这项研究中,用人血实现了 5 秒的 10%甲醛交联。使用该策略鉴定了白蛋白的 35 个配体。与白蛋白组的四项主要先前研究进行比较,发现我们研究中鉴定的 35 个配体中有 68.57%在其他研究中被鉴定出来。

结论

实现了快速交联。4F 策略可用于在没有事先干预的情况下鉴定实时原位相互作用,并全面鉴定特定靶蛋白的配体,假阳性率较低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c255/3922604/19fdfd698f90/1477-5956-12-6-1.jpg

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