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Fluorescent primuline derivatives inhibit hepatitis C virus NS3-catalyzed RNA unwinding, peptide hydrolysis and viral replicase formation

机译:荧光primuline衍生物抑制丙型肝炎病毒NS3催化的RNA展开,肽水解和病毒复制酶的形成

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The hepatitis C virus (HCV) multifunctional nonstructural protein 3 (NS3) is a protease that cleaves viral and host proteins and a helicase that separates DNA and RNA structures in reactions fueled by ATP hydrolysis. Li et al. (2012) recently synthesized a series of new NS3 helicase inhibitors from the benzothiazole dimer component of the fluorescent yellow dye primuline. This study further characterizes a subset of these primuline derivatives with respect to their specificity, mechanism of action, and effect on cells harboring HCV subgenomic replicons. All compounds inhibited DNA and RNA unwinding catalyzed by NS3 from different HCV genotypes, but only some inhibited the NS3 protease function, and few had any effect on HCV NS3 catalyzed ATP hydrolysis. A different subset contained potent inhibitors of RNA stimulated ATP hydrolysis catalyzed by the related NS3 protein from Dengue virus. In assays monitoring intrinsic protein fluorescence in the absence of nucleic acids, the compounds cooperatively bound NS3 with Kds that reflect their potency in assays. The fluorescent properties of the primuline derivatives both in vitro and in cells are also described. The primuline derivative that was the most active against subgenomic replicons in cells caused a 14-fold drop in HCV RNA levels (IC50=5±2μM). In cells, the most effective primuline derivative did not inhibit the cellular activity of NS3 protease but disrupted HCV replicase structures.
机译:丙型肝炎病毒(HCV)多功能非结构蛋白3(NS3)是一种蛋白酶,可裂解病毒和宿主蛋白,而解旋酶可在ATP水解推动的反应中分离DNA和RNA结构。 Li等。 (2012)最近从荧光黄色染料伯灵的苯并噻唑二聚体组分合成了一系列新的NS3解旋酶抑制剂。这项研究从其特异性,作用机理以及对带有HCV亚基因组复制子的细胞的影响方面进一步表征了这些Primuline衍生物的子集。所有化合物均抑制了来自不同HCV基因型的NS3催化的DNA和RNA的解旋,但只有一些抑制了NS3蛋白酶的功能,几乎没有任何作用于HCV NS3催化的ATP水解。一个不同的子集包含由登革热病毒相关的NS3蛋白催化的RNA刺激的ATP水解的有效抑制剂。在不存在核酸的情况下监测内在蛋白荧光的测定中,化合物与NS3协同结合NS3,反映了其在测定中的功效。还描述了primuline衍生物在体外和细胞中的荧光特性。在细胞中对亚基因组复制子最活跃的primuline衍生物导致HCV RNA水平下降了14倍(IC50 = 5±2μM)。在细胞中,最有效的primuline衍生物不会抑制NS3蛋白酶的细胞活性,但会破坏HCV复制酶的结构。

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