Vaz Paola K, Armat Marzieh, Hartley Carol A, Devlin Joanne M
Asia-Pacific Centre for Animal Health, Melbourne Veterinary School, University of Melbourne, Parkville, Victoria, Australia.
J Gen Virol. 2023 Apr;104(4). doi: 10.1099/jgv.0.001836.
Infectious laryngotracheitis virus (ILTV; an alphaherpesvirus) is a respiratory pathogen of chickens and causes significant economic losses in the poultry industry globally, in addition to severe animal health and welfare concerns. To date, studying the role of ILTV genes in viral infection, replication or pathogenesis has largely been limited to genes that can be deleted from the ILTV genome and the resultant deletion mutants characterized or . However, this approach is not suitable for the study of essential genes. This study trialled two different codon deoptimization techniques that aimed to separately disrupt and downregulate the expression of two ILTV genes, ICP8 and UL12, which are essential or very important in viral replication. The target genes were partially recoded using codon usage deoptimization (CUD) and codon pair bias deoptimization (CPBD) approaches and characterized . Viruses deoptimized via CPBD showed decreased protein expression as assessed by Western blotting and/or fluorescence microscopy to measure the intensity of the fluorescent marker fused to the target protein. Viruses deoptimized by CUD showed less consistent results, with some mutants that could not be generated or isolated. The results indicate that CPBD is an attractive and viable tool for the study of essential or critically important genes in ILTV. This is the first study, to our knowledge, that utilizes CPBD and CUD techniques for the study of ILTV genes.
传染性喉气管炎病毒(ILTV;一种α疱疹病毒)是鸡的呼吸道病原体,除了严重影响动物健康和福利外,还在全球家禽业造成重大经济损失。迄今为止,研究ILTV基因在病毒感染、复制或发病机制中的作用,很大程度上局限于那些可以从ILTV基因组中删除并对所得缺失突变体进行表征的基因。然而,这种方法不适用于必需基因的研究。本研究尝试了两种不同的密码子去优化技术,旨在分别破坏和下调两个对病毒复制至关重要或非常重要的ILTV基因ICP8和UL12的表达。使用密码子使用去优化(CUD)和密码子对偏好去优化(CPBD)方法对靶基因进行部分重新编码并进行表征。通过CPBD去优化的病毒,经蛋白质印迹和/或荧光显微镜评估融合到靶蛋白的荧光标记强度,显示出蛋白质表达降低。通过CUD去优化的病毒结果不太一致,一些突变体无法产生或分离出来。结果表明,CPBD是研究ILTV中必需或极其重要基因的一种有吸引力且可行的工具。据我们所知,这是第一项利用CPBD和CUD技术研究ILTV基因的研究。