Mihajlovic Marija L, Mitrasinovic Petar M
Department of Physical Chemistry, University of Belgrade, Studentski Trg 12-16, 11000 Belgrade, Serbia.
Biophys Chem. 2008 Aug;136(2-3):152-8. doi: 10.1016/j.bpc.2008.06.003. Epub 2008 Jun 14.
In the context of a recent pandemic threat by the worldwide spread of H5N1 avian influenza, the high resistance of H5N1 virus to the most widely used commercial drug, oseltamivir (Tamiflu), is currently an important research topic. Herein, molecular bases of the mechanism of H5N1 NA resistance to oseltamivir were elucidated using a computational approach in a systematic fashion. Using the crystal structure of the complex of H5N1 NA with OTV (PDB ID: 2hu0) as the starting point, the question, how mutations at His274 by both smaller side chain (Gly, Ser, Asn, Gln) and larger side chain (Phe, Tyr) residues influence the sensitivity of N1 to oseltamivir, was addressed and correlated with the experimental data. The smaller side chain residue mutations of His274 resulted in slightly enhanced or unchanged NA sensitivity to OTV, while His274Phe and His274Tyr reduced the susceptibility of OTV to N1. In contrast to the binding free energies, the net charges of Glu276 and Arg224, making charge-charge interactions with Glu276, were established to be more sensitive to detecting subtle conformational differences induced at the key residue Glu276 by the His274X mutations. This study provides deeper insights into the possibility of developing viable drug-resistant mutants.
在H5N1禽流感全球传播构成近期大流行威胁的背景下,H5N1病毒对最广泛使用的商业药物奥司他韦(达菲)具有高度抗性,这是当前一个重要的研究课题。在此,我们以系统的方式采用计算方法阐明了H5N1神经氨酸酶(NA)对奥司他韦产生抗性的分子机制基础。以H5N1 NA与OTV复合物的晶体结构(蛋白质数据银行编号:2hu0)为起点,研究了His274处被较小侧链(甘氨酸、丝氨酸、天冬酰胺、谷氨酰胺)和较大侧链(苯丙氨酸、酪氨酸)残基取代的突变如何影响N1对奥司他韦的敏感性,并将其与实验数据相关联。His274的较小侧链残基突变导致NA对OTV的敏感性略有增强或不变,而His274Phe和His274Tyr降低了OTV对N1的敏感性。与结合自由能不同,与Glu276形成电荷 - 电荷相互作用的Glu276和Arg224的净电荷,被证实对检测由His274X突变在关键残基Glu276处诱导的细微构象差异更为敏感。这项研究为开发可行的耐药突变体的可能性提供了更深入的见解。