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Identification of Orai1 channel inhibitors by using minimal functional domains to screen small molecule microarrays

机译:通过使用最小功能域筛选小分子微阵列来鉴定Orai1通道抑制剂

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摘要

Store-operated calcium (SOC) channels are vital for activation of the immune cells, and mutations in the channel result in severe combined immunodeficiency in human patients. In lymphocytes, SOC entry is mediated by the Orai1 channel, which is activated by direct binding of STIM1. Here we describe an alternative approach for identifying inhibitors of SOC entry using minimal functional domains of STIM1 and Orai1 to screen a small-molecule microarray. This screen identified AnCoA4, which inhibits SOC entry at submicromolar concentrations and blocks T cell activation in vitro and in vivo. Biophysical studies revealed that AnCoA4 binds to the C terminus of Orai1, directly inhibiting calcium influx through the channel and also reducing binding of STIM1. AnCoA4, unlike other reported SOC inhibitors, is a molecule with a known binding site and mechanism of action. These studies also provide proof of principle for an approach to ion channel drug discovery.
机译:储存钙离子(SOC)通道对于激活免疫细胞至关重要,通道中的突变会导致人类患者严重的综合免疫缺陷。在淋巴细胞中,SOC进入是由Orai1通道介导的,该通道由STIM1的直接结合激活。在这里,我们描述了使用STIM1和Orai1的最小功能域筛选小分子微阵列来鉴定SOC进入抑制剂的替代方法。该筛选鉴定出AnCoA4,其在亚微摩尔浓度下抑制SOC进入并在体外和体内阻断T细胞活化。生物物理研究表明,AnCoA4与Orai1的C末端结合,直接抑制钙通过通道的流入,并减少STIM1的结合。与其他报道的SOC抑制剂不同,AnCoA4是一种具有已知结合位点和作用机理的分子。这些研究还提供了离子通道药物发现方法的原理证明。

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