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重组 NOD1(NLRC1):NLR 家族成员的表达、纯化和特性分析。

Expression, purification, and characterization of recombinant NOD1 (NLRC1): A NLR family member.

机构信息

Sanford-Burnham Medical Research Institute, 10901 N Torrey Pines Rd., La Jolla, CA 92037, USA.

出版信息

J Biotechnol. 2012 Jan;157(1):75-81. doi: 10.1016/j.jbiotec.2011.10.007. Epub 2011 Oct 28.

Abstract

NOD1 (NLRC1) is a member of the NLR family of innate immunity proteins, which are important cellular sensors of various pathogens. Deregulated NOD1 signaling is involved in various autoimmune, inflammatory, and allergic diseases, making it a potential target for drug discovery. However, to date, the successful high-yield purification NOD1 protein has not been reported. Here we describe the large-scale expression of recombinant NOD1 protein in non-adherent mammalian cells. One-step immunoaffinity purification was carried out, yielding highly pure protein with excellent yields. Gel-sieve chromatography studies showed that the purified NOD1 protein eluted almost exclusively as a monomer. Addition of the NOD1 ligand (γ-Tri-DAP) stimulated NOD1 protein oligomerization. Using purified NOD1 protein for nucleotide binding studies by the Fluorescence Polarization Assay (FPA) method, we determined that NOD1 binds preferentially to ATP over ADP and AMP or dATP. We also documented that purified NOD1 protein binds directly to purified pro-apoptotic protein Bid, thus extending recent data that have identified Bid as an enhancer of NOD1 signaling. This expression and purification strategy will enable a wide variety of biochemical studies of mechanisms of NOD1 regulation, as well as laying a foundation for future attempts at drug discovery.

摘要

核苷酸结合寡聚结构域 1(NOD1)是先天免疫蛋白 NLR 家族的成员,是各种病原体的重要细胞传感器。NOD1 信号的失调参与了各种自身免疫、炎症和过敏疾病,使其成为药物发现的潜在靶点。然而,迄今为止,尚未有成功高产量纯化 NOD1 蛋白的报道。在这里,我们描述了在非贴壁哺乳动物细胞中大规模表达重组 NOD1 蛋白的方法。通过一步免疫亲和纯化,得到了高纯度、高产量的蛋白。凝胶过滤层析研究表明,纯化的 NOD1 蛋白几乎仅以单体形式洗脱。添加 NOD1 配体(γ-Tri-DAP)可刺激 NOD1 蛋白寡聚化。使用纯化的 NOD1 蛋白通过荧光偏振测定法(FPA)进行核苷酸结合研究,我们确定 NOD1 优先结合 ATP 而不是 ADP 和 AMP 或 dATP。我们还记录到纯化的 NOD1 蛋白直接与纯化的促凋亡蛋白 Bid 结合,从而扩展了最近的数据,这些数据表明 Bid 是 NOD1 信号的增强子。这种表达和纯化策略将能够广泛开展 NOD1 调节机制的各种生化研究,并为未来的药物发现尝试奠定基础。

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