Teixeira Thiago Salem Pançonato, Caruso Ícaro Putinhon, Lopes Bruno Rafael Pereira, Regasini Luis Octávio, Toledo Karina Alves de, Fossey Marcelo Andrés, Souza Fátima Pereira de
Instituto de Biociências, Letras e Ciências Exatas, UNESP Univ Estadual Paulista, Campus São José do Rio Preto, Departamento de Biologia, Brazil; Instituto de Biociências, Letras e Ciências Exatas, UNESP Univ Estadual Paulista, Campus São José do Rio Preto, Centro Multiusuário de Inovação Biomolecular, Laboratório de Biologia Molecular, Brazil.
Instituto de Biociências, Letras e Ciências Exatas, UNESP Univ Estadual Paulista, Campus São José do Rio Preto, Departamento de Física, Brazil; Instituto de Biociências, Letras e Ciências Exatas, UNESP Univ Estadual Paulista, Campus São José do Rio Preto, Centro Multiusuário de Inovação Biomolecular, Laboratório de Biologia Molecular, Brazil.
Int J Biol Macromol. 2017 Feb;95:63-71. doi: 10.1016/j.ijbiomac.2016.11.033. Epub 2016 Nov 13.
hRSV is the major causative agent of acute respiratory infections. Among its eleven proteins, M2-1 is a transcription antiterminator, making it an interesting target for antivirals. Quercetin is a flavonol which inhibits some virus infectivity and replication. In the present work, the M2-1 gene was cloned, expressed and the protein was purified. Thermal stability and secondary structure were analyzed by circular dichroism and the interaction with Quercetin was evaluated by fluorescence spectroscopy. Molecular docking experiments were performed to understand this mechanism of interaction. The purified protein is mainly composed of α-helix, with a melting temperature of 328.6K (≈55°C). M2-1 titration with Quercetin showed it interacts with two sites, one with a strong constant association K1 (site 1≈1.5×10M) by electrostatic interactions, and another with a weak constant association K2 (site 2≈1.1×10M) by a hydrophobic interaction. Ligand's docking shows it interacts with the N-terminus face in a more polar pocket and, between the domains of oligomerization and RNA and P protein interaction, in a more hydrophobic pocket, as predicted by experimental data. Therefore, we postulated this ligand could be interacting with important domains of the protein, avoiding viral replication and budding.
人呼吸道合胞病毒(hRSV)是急性呼吸道感染的主要病原体。在其11种蛋白质中,M2-1是一种转录抗终止因子,使其成为抗病毒药物的一个有趣靶点。槲皮素是一种黄酮醇,可抑制某些病毒的感染性和复制。在本研究中,克隆并表达了M2-1基因,纯化了该蛋白。通过圆二色性分析热稳定性和二级结构,并通过荧光光谱评估其与槲皮素的相互作用。进行分子对接实验以了解这种相互作用机制。纯化后的蛋白主要由α-螺旋组成,解链温度为328.6K(约55°C)。用槲皮素对M2-1进行滴定表明,它与两个位点相互作用,一个位点通过静电相互作用具有较强的缔合常数K1(位点1≈1.5×10M),另一个位点通过疏水相互作用具有较弱的缔合常数K2(位点2≈1.1×10M)。配体对接显示,如实验数据所预测,它在一个极性更强的口袋中与N端表面相互作用,在寡聚化结构域与RNA和P蛋白相互作用的区域之间,在一个疏水性更强的口袋中相互作用。因此,我们推测这种配体可能与该蛋白的重要结构域相互作用,从而避免病毒复制和出芽。