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Functional characterization of novel mutations in UL54 of ganciclovir resistant HCMV strain using structural analysis

机译:更昔洛韦抗性HCMV株UL54新突变的功能表征

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摘要

This study reports the probable impact of the coupled mutations observed in our clinical isolate of HCMV UL54 polymerase, through structural bioinformatics approaches. The reported variant was found to be resistant to Ganciclovir (GCV) as per the clinical records. The presence of Glutamine deletion at 639 (Glu639) and a mis sense mutation of Serine 655 Leucine (Ser655Leu) in UL54 were identified by DNA sequencing and were predicted to lie in the DNA polymerase type-II domain. Docking simulation studies of the phosphorylated forms of Ganciclovir (GCV), Cidofovir (CDV) and Foscarnet (PFA) with the reported mutants showed significant variation in terms of binding affinity and inhibitory constant (Ki) in comparison to wild type UL54. The findings of this study revealed that the observed coupled mutation could potentially induce allosteric effects in the binding pockets of UL54 and thereby alter the drug binding affinity. In specific, it was observed that this coupled mutation could confer changes in the binding affinity of GCV and PFA by altering the binding energies and inhibitory constants to -0.88Kcal/mol and 226.71mM, -5.81Kcal/mol and 54.83µM, respectively, in comparison to Wild Type. On the other hand, CDV showed increased susceptibility for the reported mutant with a binding energy of -6.16Kcal/mol and inhibitory constant of 30.47µM.
机译:这项研究报告了通过结构生物信息学方法在我们的HCMV UL54聚合酶临床分离株中观察到的偶联突变的可能影响。根据临床记录,发现报告的变体对更昔洛韦(GCV)具有抗性。通过DNA测序鉴定出UL54中存在谷氨酰胺缺失(Glu639)和丝氨酸655亮氨酸(Ser655Leu)的错义突变,并且推测其位于II型DNA聚合酶结构域。更昔洛韦(GCV),西多福韦(CDV)和膦甲酸酯(PFA)的磷酸化形式与已报道的突变体的对接模拟研究表明,与野生型UL54相比,结合亲和力和抑制常数(Ki)有显着变化。这项研究的结果表明,观察到的偶联突变可能会在UL54的结合口袋中诱导变构作用,从而改变药物结合亲和力。具体而言,观察到该偶联突变可通过将结合能和抑制常数分别改变为-0.88Kcal / mol和226.71mM,-5.81Kcal / mol和54.83μM,从而赋予GCV和PFA结合亲和力变化。与野生型相比。另一方面,对于已报道的突变体,CDV的敏感性更高,结合能为-6.16Kcal / mol,抑制常数为30.47μM。

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