In Silico Evaluation of Deleterious SNPs in Chicken TLR3 and TLR4 Genes

Donghyun Shin, K. Song
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Abstract

The innate immune recognition is based on the detection of microbial products. Toll-like receptors (TLRs) located on the cell surface and the endosome senses microbial components and nucleic acids, respectively. Chicken TLRs mediate immune responses by sensing ligands from pathogens, have been studied as immune adjuvants to increase the efficacy of vaccines. Single nucleotide polymorphisms (SNPs) of TLR3 and TLR4 genes in chicken were associated with resistance and susceptibility to viral infection. In this study, SNPs of chTLR3 and chTLR4 genes were retrieved from public database and annotated with chicken reference genome. Three-dimensional models of the chTLR3 and chTLR4 proteins were built using a Swiss modeler. We identified 35 and 13 nsSNPs in chTLR3 and chTLR4 genes respectively. Sorting Intolerant from Tolerant (SIFT) and Polymorphism Phenotyping v2 (Polyphen-2) analyses, suggested that, out of 35 and 13 nsSNPs, 4 and 2 SNPs were identified to be deleterious in chTLR3 and chTLR4 gene respectively. In chTLR3, 1 deleterious SNP was located in ectodomain and 3 were located in the Toll / IL-1 receptor (TIR) domain. Further structural model of chTLR3-TIR domain suggested that 1 deleterious SNP be present in the B-B loop region, which is important for TIR-TIR domain interactions in the downstream signaling. In chTLR4, the deleterious SNPs were located both in the ectodomain and TIR domain. SNPs predicted for chTLR3 and chTLR4 in this study, might be related to resistance or susceptible to viral infection in chickens. Results from this study will be useful to develop the effective measures in chicken against infectious diseases. (
鸡TLR3和TLR4基因有害单核苷酸多态性的计算机分析
先天免疫识别是以微生物产物的检测为基础的。toll样受体(Toll-like receptor, TLRs)分别位于细胞表面和核内体上,感知微生物成分和核酸。鸡tlr通过感应病原体的配体介导免疫应答,已被研究作为免疫佐剂来提高疫苗的效力。鸡TLR3和TLR4基因的单核苷酸多态性(snp)与病毒感染的抗性和易感性有关。本研究从公共数据库中检索chTLR3和chTLR4基因的snp,并用鸡参考基因组进行注释。使用瑞士建模器构建chTLR3和chTLR4蛋白的三维模型。在chTLR3和chTLR4基因中分别鉴定出35个和13个非单核苷酸多态性。不耐从耐(SIFT)和多态性表型v2 (polyphen2)分析表明,在35个和13个nssnp中,鉴定出4个和2个SNPs分别在chTLR3和chTLR4基因中有害。在chTLR3中,1个有害SNP位于外域,3个位于Toll / IL-1受体(TIR)域。chTLR3-TIR结构域进一步的结构模型表明,在B-B环区存在1个有害SNP,这对下游信号传导中TIR-TIR结构域的相互作用很重要。在chTLR4中,有害snp位于外域和TIR域。本研究预测的chTLR3和chTLR4的snp可能与鸡对病毒感染的抗性或易感性有关。本研究结果将为制定有效的鸡传染性疾病防治措施提供参考。(
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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