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首页> 外文期刊>Drug Design, Development and Therapy >Cytoprotective effect of selective small-molecule caspase inhibitors against staurosporine-induced apoptosis
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Cytoprotective effect of selective small-molecule caspase inhibitors against staurosporine-induced apoptosis

机译:选择性小分子胱天蛋白酶抑制剂对星形孢菌素诱导的细胞凋亡的细胞保护作用

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Abstract: Caspases are currently known as the central executioners of the apoptotic pathways. Inhibition of apoptosis and promotion of normal cell survival by caspase inhibitors would be a tremendous benefit for reducing the side effects of cancer therapy and for control of neurodegenerative disorders such as Parkinson's, Alzheimer's, and Huntington's diseases. The objective of this study was to discover small-molecule caspase inhibitors with which to achieve cytoprotective effect. We completed the high-throughput screening of Bionet's 37,500-compound library (Key Organics Limited, Camelford, Cornwall, UK) against caspase-1, -3, and -9 and successfully identified 43 initial hit compounds. The 43 hit compounds were further tested for cytoprotective activity against staurosporine-induced cell death in NIH3T3 cells. Nineteen compounds were found to have significant cytoprotective effects in cell viability assays. One of the compounds, RBC1023, was demonstrated to protect NIH3T3 cells from staurosporine-induced caspase-3 cleavage and activation. RBC1023 was also shown to protect against staurosporine-induced impairment of mitochondrial membrane potential. DNA microarray analysis demonstrated that staurosporine treatment induced broad global gene expression alterations, and RBC1023 co-treatment significantly restored these changes, especially of the genes that are related to cell growth and survival signaling such as Egr1, Cdc25c, cdkn3, Rhob, Nek2, and Taok1. Collectively, RBC1023 protects NIH3T3 cells against staurosporine-induced apoptosis via inhibiting caspase activity, restoring mitochondrial membrane potential, and possibly upregulating some cell survival-related gene expressions and pathways.
机译:摘要:半胱天冬酶目前被称为凋亡途径的中枢执行者。通过半胱天冬酶抑制剂抑制细胞凋亡并促进正常细胞存活将对减少癌症治疗的副作用以及控制神经退行性疾病(如帕金森氏症,阿尔茨海默氏症和亨廷顿氏病)产生巨大的好处。这项研究的目的是发现小分子胱天蛋白酶抑制剂,以实现细胞保护作用。我们完成了Bionet针对caspase-1,-3和-9的37,500化合物库(Key Organics Limited,Camelford,英国康沃尔)的高通量筛选,并成功鉴定出43种初始命中化合物。进一步测试了43种命中化合物对NIH3T3细胞中星形孢菌素诱导的细胞死亡的细胞保护活性。在细胞活力测定中发现有19种化合物具有显着的细胞保护作用。化合物之一RBC1023被证明可以保护NIH3T3细胞免受星形孢菌素诱导的caspase-3裂解和活化。还显示出RBC1023可以防止星形孢菌素诱导的线粒体膜电位受损。 DNA微阵列分析表明,星形孢菌素处理可引起广泛的全球基因表达变化,RBC1023共同处理可显着恢复这些变化,尤其是与细胞生长和存活信号相关的基因,例如Egr1,Cdc25c,cdkn3,Rhob,Nek2和淘客1。 RBC1023通过抑制caspase活性,恢复线粒体膜电位以及可能上调一些与细胞存活相关的基因表达和途径来保护NIH3T3细胞免受星形孢菌素诱导的凋亡。

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