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首页> 外文期刊>Amino acids >Understanding the distinguishable structural and functional features in zebrafish TLR3 and TLR22, and their binding modes with fish dsRNA viruses: an exploratory structural model analysis
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Understanding the distinguishable structural and functional features in zebrafish TLR3 and TLR22, and their binding modes with fish dsRNA viruses: an exploratory structural model analysis

机译:了解斑马鱼TLR3和TLR22中可分辨的结构和功能特征,以及它们与鱼dsRNA病毒的结合模式:探索性结构模型分析

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摘要

Viral infections are one of the major challenges in aquaculture production, and considered as the potential threat for fish farming. Toll-like receptor (TLR) 3 and TLR22 are highly specialized innate immune receptors that recognize double-stranded (ds)-RNA of viruses resulting in the induction of innate immunity. The existence of TLR3 and TLR22 only in aquatic animals indicates their distinctive characteristics in viral infection; however, the studies in exploring their structural features and dsRNA binding mechanism are still elusive. Here, we studied the structural and functional differentiations of TLR3 and TLR22 in zebrafish by employing comparative modeling and molecular dynamics simulation. Comparative structural analysis revealed a distinct spatial arrangement of TLR22 ectodomain with a flattened horseshoe-shape conformation as compared to other TLRs. Essential dynamics studies showed that unlike TLR3, TLR22 possessed a prominent motion, elasticity and twisting at both terminus separated by a distance equivalent to the length of a short-sized dsRNA. Interaction analysis of polyinosinic:polycytidylic acid (poly I:C) and dsRNA depicted leucine-rich-repeats (LRR)2-3 and LRR18-19 (in TLR3) and LRRNT-LRR3 and LRR22-24 (in TLR22) as the potential binding sites. The short-sized dsRNA binds tightly across its full-length with TLR22-monomer, and suggested that TLR22 dimer may sense long-sized dsRNA. Binding energy (BE) calculation using MM/PBSA method from the TLR3- and TLR22-ligand complexes revealed an adequate binding affinity between TLR22-monomer and dsRNA as like as TLR3-dimer-dsRNA complex. Mutagenesis and BE computation of key residues suggested their involvement in dsRNA recognition. These findings can be helpful for therapeutic applications against viral diseases in fish.
机译:病毒感染是水产养殖生产的主要挑战之一,被视为对鱼类养殖的潜在威胁。 Toll样受体(TLR)3和TLR22是高度专业的先天免疫受体,可识别病毒的双链(ds)-RNA,从而诱导先天免疫。仅在水生动物中存在TLR3和TLR22,这表明它们在病毒感染中具有独特的特征。但是,探索其结构特征和dsRNA结合机制的研究仍很困难。在这里,我们通过比较模型和分子动力学模拟研究了斑马鱼中TLR3和TLR22的结构和功能差异。对比结构分析显示,与其他TLR相比,TLR22胞外域具有平坦的马蹄形构象的独特空间排列。基本动力学研究表明,与TLR3不同,TLR22在两个末端具有显着的运动,弹性和扭曲,它们之间的距离等于短链dsRNA的长度。聚肌苷酸:聚胞苷酸(poly I:C)与dsRNA的相互作用分析显示富含亮氨酸的重复序列(LRR)2-3和LRR18-19(在TLR3中)以及LRRNT-LRR3和LRR22-24(在TLR22中)结合位点。短尺寸的dsRNA在其全长上与TLR22单体紧密结合,并暗示TLR22二聚体可能会感觉到长尺寸的dsRNA。使用TLR3-和TLR22-配体复合物的MM / PBSA方法计算结合能(BE),表明TLR22-单体和dsRNA之间具有足够的结合亲和力,就像TLR3-二聚体-dsRNA复合物一样。关键残基的诱变和BE计算表明它们参与了dsRNA识别。这些发现可有助于治疗鱼类中的病毒性疾病。

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