Kim Yoonhee, Kim Yong-Chan, Jeong Byung-Hoon
Korea Zoonosis Research Institute, Jeonbuk National University, Iksan, South Korea.
Department of Bioactive Material Sciences and Institute for Molecular Biology and Genetics, Jeonbuk National University, Jeonju, South Korea.
Front Vet Sci. 2022 May 25;9:870735. doi: 10.3389/fvets.2022.870735. eCollection 2022.
Prion diseases are fatal infectious diseases caused by conformational changes of a prion protein (PrP) derived from a normal prion protein (PrP). Prion diseases have been reported in several mammalian hosts but not in any birds, including the most popular poultry species, of which chickens showed some resistance to experimental prion infection. To identify the genetic polymorphisms in the quail prion protein gene (, polymerase chain reaction and DNA sequencing were performed with gene-specific primers in 164 quails. Four programs, including PROVEAN, PANTHER, SIFT, and AMYCO, were used to investigate the effect of non-synonymous single nucleotide polymorphisms (SNPs) on quail PrP. Furthermore, to investigate the genetic relationship of avian PrPs, phylogenetic analysis and multiple sequence alignments were performed using MEGA X program. Finally, the secondary and tertiary structures of avian PrPs were analyzed by SWISS-MODEL. We identified 33 novel SNPs in the quail gene, including three non-synonymous SNPs, c.56C>T (T19I), c.60C>T (V21I), and c.61G>A (A22S). Although V21I was predicted to have deleterious effects by SIFT, the substitutions of all three amino acids did not affect the amyloid propensity, 3D structure, or hydrogen bonds of quail PrP. Quail PrP showed a close evolutionary relationship and similar secondary and tertiary structures to chicken PrP compared to duck PrP. To our knowledge, this is the first report on the genetic and structural properties of the quail gene.
朊病毒疾病是由正常朊病毒蛋白(PrP)衍生而来的朊病毒蛋白(PrP)构象变化引起的致命性传染病。朊病毒疾病已在多种哺乳动物宿主中被报道,但在任何鸟类中都未发现,包括最常见的家禽品种,其中鸡对实验性朊病毒感染表现出一定的抗性。为了鉴定鹌鹑朊病毒蛋白基因中的遗传多态性,使用基因特异性引物对164只鹌鹑进行了聚合酶链反应和DNA测序。使用包括PROVEAN、PANTHER、SIFT和AMYCO在内的四个程序来研究非同义单核苷酸多态性(SNP)对鹌鹑PrP的影响。此外,为了研究禽类PrP的遗传关系,使用MEGA X程序进行了系统发育分析和多序列比对。最后,通过SWISS-MODEL分析了禽类PrP的二级和三级结构。我们在鹌鹑基因中鉴定出33个新的SNP,包括三个非同义SNP,即c.56C>T(T19I)、c.60C>T(V21I)和c.61G>A(A22S)。尽管SIFT预测V21I具有有害影响,但这三个氨基酸的替换均未影响鹌鹑PrP的淀粉样蛋白倾向、三维结构或氢键。与鸭PrP相比,鹌鹑PrP与鸡PrP显示出密切的进化关系以及相似的二级和三级结构。据我们所知,这是关于鹌鹑基因遗传和结构特性的首次报道。