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貉朊病毒蛋白基因的结构特征和多态性首次报道:朊病毒病抗性的可能性

First report of structural characteristics and polymorphisms of the prion protein gene in raccoon dogs: The possibility of prion disease-resistance.

作者信息

Jo Woo-Sung, Kim Yong-Chan, Oem Jae-Ku, Jeong Byung-Hoon

机构信息

Korea Zoonosis Research Institute, Jeonbuk National University, Iksan, South Korea.

Department of Bioactive Material Sciences, Jeonbuk National University, Jeonju, South Korea.

出版信息

Front Vet Sci. 2022 Sep 20;9:989352. doi: 10.3389/fvets.2022.989352. eCollection 2022.

Abstract

Prion diseases are fatal degenerative encephalopathies caused by misfolded prion protein (PrP) converted from normal prion protein (PrP). Previous studies have reported that genetic polymorphisms of the prion protein gene () play a critical role in susceptibility to prion diseases. In addition, prion disease-resistant animals showed unique structural features of prion protein (PrP) related to species-specific amino acids. However, investigations of genetic polymorphisms of the gene and structural characteristics of PrP have not been performed in raccoon dogs thus far. We investigated genetic polymorphisms of in 87 raccoon dogs using amplicon sequencing and analyzed the genotype, allele, haplotype frequencies, and linkage disequilibrium (LD) using Haploview version 4.2. In addition, we performed phylogenetic analysis and multiple sequence alignment (MSA) using MEGA X version 10.1.8 and Clustal X version 2.1, respectively. We estimated the impact of raccoon dog and Canidae family-specific amino acids using PolyPhen-2, PROVEAN, and AMYCO. Furthermore, we analyzed the effect of raccoon dog and Canidae family-specific amino acids using the AlphaFold2 and Swiss-PdbViewer programs. We found 4 novel single nucleotide polymorphisms (SNPs) of the raccoon dog gene. In addition, the raccoon dog PrP showed 99.61% identity and the closest genetic distance to dog PrP. Among the substitutions of Canidae-specific amino acids with interspecific amino acids, D163N showed increased amyloidogenic propensity, and R181H showed alterations of hydrogen bonds. Furthermore, electrostatic potentials were changed according to the substitutions of D163N and R181H. By comparing PrP between raccoon dogs and raccoons, R168K and K224R were found to be related to changes in hydrogen bonds, and K224R altered the electrostatic potential of raccoon dog PrP. In the present study, we first reported 4 novel synonymous SNPs of the raccoon dog gene. We also identified that the PrP of raccoon dog has high homology (99.61%) with PrP of dog, which is a prion-resistant animal. In addition, raccoon dog PrP-specific amino acids are related to low amyloid propensity and inherent characteristics of 3D structure of raccoon dog PrP compared to the PrP of prion-susceptible species.

摘要

朊病毒病是由正常朊病毒蛋白(PrP)转变为错误折叠的朊病毒蛋白(PrP)所引起的致命性退行性脑病。先前的研究报道,朊病毒蛋白基因()的遗传多态性在朊病毒病易感性中起关键作用。此外,抗朊病毒病的动物显示出与物种特异性氨基酸相关的独特朊病毒蛋白(PrP)结构特征。然而,迄今为止尚未对貉的基因遗传多态性和PrP的结构特征进行研究。我们使用扩增子测序法对87只貉的基因遗传多态性进行了研究,并使用Haploview 4.2版本分析了基因型、等位基因、单倍型频率和连锁不平衡(LD)。此外,我们分别使用MEGA X 10.1.8版本和Clustal X 2.1版本进行了系统发育分析和多序列比对(MSA)。我们使用PolyPhen-2、PROVEAN和AMYCO评估了貉和犬科动物特异性氨基酸的影响。此外,我们使用AlphaFold2和Swiss-PdbViewer程序分析了貉和犬科动物特异性氨基酸的作用。我们发现了貉基因的4个新的单核苷酸多态性(SNP)。此外,貉PrP与犬PrP的同一性为99.61%,且遗传距离最近。在犬科动物特异性氨基酸被种间氨基酸取代的情况中,D163N的淀粉样变性倾向增加,R181H的氢键发生改变。此外,D163N和R181H的取代导致静电势发生变化。通过比较貉和浣熊的PrP,发现R168K和K224R与氢键变化有关,K224R改变了貉PrP的静电势。在本研究中,我们首次报道了貉基因的4个新的同义SNP。我们还确定了貉的PrP与抗朊病毒病动物犬的PrP具有高度同源性(99.61%)。此外,与朊病毒易感物种的PrP相比,貉PrP特异性氨基酸与低淀粉样变性倾向及貉PrP三维结构的固有特征有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87ad/9530392/9de69201661a/fvets-09-989352-g0001.jpg

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