Egorov Vladimir V, Matusevich Oleg V, Shaldzhyan Aram A, Skvortsov Alexey N, Zabrodskaya Yana A, Garmay Yuri P, Landa Sergey B, Lebedev Dmitry V, Zarubayev Vladimir V, Sirotkin Alexey K, Vasin Andrey V, Kiselev Oleg I
Department of Molecular Virology, FSBI Research Institute of Influenza, Ministry of Health of the Russian Federation, 15/17, Professor Popova Street, Saint Petersburg 197376, Russia ; Department of Molecular and Radiation Biophysics, Kurchatov Institute, FSBI St. Petersburg Nuclear Physics Institute, Orlova Roscha, Gatchina 188300, Russia.
Department of Molecular Virology, FSBI Research Institute of Influenza, Ministry of Health of the Russian Federation, 15/17, Professor Popova Street, Saint Petersburg 197376, Russia ; Faculty of Chemistry, Saint Petersburg State University, Saint Petersburg 198504, Russia.
Int J Pept. 2013;2013:370832. doi: 10.1155/2013/370832. Epub 2013 Dec 24.
A mirror-symmetry motif was discovered in the N-terminus of the influenza virus PB1 protein. Structure of peptide comprised of the corresponding part of PB1 (amino acid residues 6-25) was investigated by circular dichroism and in silico modeling. We found that peptide PB1 (6-25) in solution assumes beta-hairpin conformation. A truncated peptide PB1 (6-13), containing only half of the mirror-symmetry motif, appeared to stabilize the beta-structure of the original peptide and, at high concentrations, was capable of reacting with peptide to form insoluble aggregates in vitro. Ability of PB1 (6-13) peptide to interact with the N-terminal domain of PB1 protein makes it a potential antiviral agent that inhibits PA-PB1 complex formation by affecting PB1 N-terminus structure.
在流感病毒PB1蛋白的N端发现了一种镜像对称基序。通过圆二色性和计算机模拟研究了由PB1相应部分(氨基酸残基6 - 25)组成的肽的结构。我们发现溶液中的肽PB1(6 - 25)呈现β-发夹构象。截短的肽PB1(6 - 13)仅包含镜像对称基序的一半,似乎能稳定原始肽的β结构,并且在高浓度下能够在体外与肽反应形成不溶性聚集体。PB1(6 - 13)肽与PB1蛋白N端结构域相互作用的能力使其成为一种潜在的抗病毒剂,可通过影响PB1 N端结构来抑制PA - PB1复合物的形成。