Identification of membrane proteins targeted by small-molecule compounds using nanomagnetic beads.

IF 1.3 4区 医学 Q4 MEDICINE, RESEARCH & EXPERIMENTAL
Yasufumi Kikuchi, Takayuki Ando, Tadashi Ashizawa, Akira Iizuka, Akari Kanematsu, Chie Maeda, Chikako Hozumi, Haruo Miyata, Kazue Yamashita, Tomoatsu Ikeya, Ken Yamaguchi, Yasuto Akiyama
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Abstract

In drug discovery research, it is important to identify target proteins of bioactive small-molecule compounds and analyse their functions. In this study, we examined whether target membrane proteins could be captured by compounds that bind to membrane proteins on the cell surface. For this purpose, we performed affinity purification using the compound-immobilized nanomagnetic beads. Affinity purification with nanomagnetic beads is known to be effective for determining the protein binding partners of small molecules. However, most previous studies have targeted proteins in the cytoplasm. As a model compound, we chose BMS-1166 (a representative small-molecule compound from Bristol Myers Squibb), a PD-1/PD-L1 immune checkpoint inhibitor that binds to PD- L1 and promotes PD-L1 dimerization. BMS-1166-immobilized beads were manufactured and incubated with extracts of cells with high PD-L1 protein expression. The bound protein was confirmed by western blotting and proteomic analysis to be PD-L1. BMS-1166-immobilized nano-magnetic beads were able to specifically bind and capture the membrane protein PD-L1. In addition, high-purity protein could be obtained from cell extracts in a single step. This is the first report of the purification of a membrane protein to high purity with nanobeads. Nanomagnetic beads with immobilized compounds are an effective tool for identifying the protein binding partners of small molecules, especially when the targets are membrane proteins.

利用纳米磁珠鉴定小分子化合物靶向的膜蛋白。
在药物发现研究中,确定生物活性小分子化合物的靶蛋白并分析其功能非常重要。在本研究中,我们考察了与细胞表面膜蛋白结合的化合物能否捕获目标膜蛋白。为此,我们使用化合物固定的纳米磁珠进行了亲和纯化。众所周知,使用纳米磁珠进行亲和纯化可有效确定小分子的蛋白结合伙伴。然而,以前的大多数研究都以细胞质中的蛋白质为目标。我们选择了 BMS-1166(百时美施贵宝公司的代表性小分子化合物)作为模型化合物,它是一种 PD-1/PD-L1 免疫检查点抑制剂,能与 PD- L1 结合并促进 PD-L1 二聚化。制造出 BMS-1166 固定化珠,并将其与 PD-L1 蛋白高表达细胞的提取物孵育。经 Western 印迹和蛋白质组分析证实,结合的蛋白质为 PD-L1。BMS-1166 固定化纳米磁珠能够特异性结合并捕获膜蛋白 PD-L1。此外,只需一步就能从细胞提取物中获得高纯度蛋白质。这是用纳米磁珠纯化高纯度膜蛋白的首次报道。带有固定化合物的纳米磁珠是鉴定小分子蛋白质结合伙伴的有效工具,尤其是当目标是膜蛋白时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biomedical Research-tokyo
Biomedical Research-tokyo 医学-医学:研究与实验
CiteScore
2.40
自引率
0.00%
发文量
19
审稿时长
>12 weeks
期刊介绍: Biomedical Research is peer-reviewed International Research Journal . It was first launched in 1990 as a biannual English Journal and later became triannual. From 2008 it is published in Jan-Apr/ May-Aug/ Sep-Dec..
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