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Microarray-based screening of heat shock protein inhibitors

机译:基于芯片的热激蛋白抑制剂筛选

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Based on the importance of heat shock proteins (HSPs) in diseases such as cancer, Alzheimer's disease or malaria, inhibitors of these chaperons are needed. Today's state-of-the-art techniques to identify HSP inhibitors are performed in microplate format, requiring large amounts of proteins and potential inhibitors. In contrast, we have developed a miniaturized protein microarray-based assay to identify novel inhibitors, allowing analysis with 300 pmol of protein. The assay is based on competitive binding of fluorescence-labeled ATP and potential inhibitors to the ATP-binding site of HSP. Therefore, the developed microarray enables the parallel analysis of different ATP-binding proteins on a single microarray. We have demonstrated the possibility of multiplexing by immobilizing full-length human HSP90 alpha. and HtpG of Helicobacter pylori on microarrays. Fluorescence-labeled ATP was competed by novel geldanamycin/reblastatin derivatives with IC50 values in the range of 0.5 nM to 4 mu M and Z*-factors between 0.60 and 0.96. Our results demonstrate the potential of a target-oriented multiplexed protein microarray to identify novel inhibitors for different members of the HSP90 family.
机译:基于热休克蛋白(HSP)在诸如癌症,阿尔茨海默氏病或​​疟疾等疾病中的重要性,需要这些分子伴侣的抑制剂。如今,鉴定HSP抑制剂的最新技术是以微孔板形式进行的,需要大量的蛋白质和潜在的抑制剂。相比之下,我们已经开发出一种基于微型蛋白质微阵列的测定法,以鉴定新型抑制剂,从而可以分析300 pmol的蛋白质。该测定基于荧光标记的ATP和潜在抑制剂与HSP的ATP结合位点的竞争结合。因此,开发的微阵列能够在单个微阵列上并行分析不同的ATP结合蛋白。我们已经展示了通过固定全长人HSP90α进行多路复用的可能性。芯片上幽门螺杆菌的HtpG和HtpG。荧光标记的ATP与新型格尔德霉素/再生素衍生物竞争,IC50值在0.5 nM至4μM范围内,Z *因子在0.60至0.96之间。我们的结果证明了针对靶标的多重蛋白微阵列识别针对HSP90家族不同成员的新型抑制剂的潜力。

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