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终止密码子通读突变可减轻基孔肯雅病毒诱导的关节炎和病理损伤。

Disruption of the Opal Stop Codon Attenuates Chikungunya Virus-Induced Arthritis and Pathology.

机构信息

Department of Microbiology & Immunology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA.

Department of Genetics, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA.

出版信息

mBio. 2017 Nov 14;8(6):e01456-17. doi: 10.1128/mBio.01456-17.

Abstract

Chikungunya virus (CHIKV) is a mosquito-borne alphavirus responsible for several significant outbreaks of debilitating acute and chronic arthritis and arthralgia over the past decade. These include a recent outbreak in the Caribbean islands and the Americas that caused more than 1 million cases of viral arthralgia. Despite the major impact of CHIKV on global health, viral determinants that promote CHIKV-induced disease are incompletely understood. Most CHIKV strains contain a conserved opal stop codon at the end of the viral nsP3 gene. However, CHIKV strains that encode an arginine codon in place of the opal stop codon have been described, and deep-sequencing analysis of a CHIKV isolate from the Caribbean identified both arginine and opal variants within this strain. Therefore, we hypothesized that the introduction of the arginine mutation in place of the opal termination codon may influence CHIKV virulence. We tested this by introducing the arginine mutation into a well-characterized infectious clone of a CHIKV strain from Sri Lanka and designated this virus Opal524R. This mutation did not impair viral replication kinetics or Despite this, the Opal524R virus induced significantly less swelling, inflammation, and damage within the feet and ankles of infected mice. Further, we observed delayed induction of proinflammatory cytokines and chemokines, as well as reduced CD4 T cell and NK cell recruitment compared to those in the parental strain. Therefore, the opal termination codon plays an important role in CHIKV pathogenesis, independently of effects on viral replication. Chikungunya virus (CHIKV) is a mosquito-borne alphavirus that causes significant outbreaks of viral arthralgia. Studies with CHIKV and other alphaviruses demonstrated that the opal termination codon within nsP3 is highly conserved. However, some strains of CHIKV and other alphaviruses contain mutations in the opal termination codon. These mutations alter the virulence of related alphaviruses in mammalian and mosquito hosts. Here, we report that a clinical isolate of a CHIKV strain from the recent outbreak in the Caribbean islands contains a mixture of viruses encoding either the opal termination codon or an arginine mutation. Mutating the opal stop codon to an arginine residue attenuates CHIKV-induced disease in a mouse model. Compared to infection with the opal-containing parental virus, infection with the arginine mutant causes limited swelling and inflammation, as well as dampened recruitment of immune mediators of pathology, including CD4 T cells and NK cells. We propose that the opal termination codon plays an essential role in the induction of severe CHIKV disease.

摘要

基孔肯雅热病毒(CHIKV)是一种蚊媒甲病毒,在过去十年中导致了几次严重的急性和慢性关节炎和关节痛爆发。其中包括最近在加勒比海岛屿和美洲的一次爆发,导致超过 100 万例病毒性关节痛。尽管 CHIKV 对全球健康造成了重大影响,但促进 CHIKV 诱导疾病的病毒决定因素仍不完全清楚。大多数 CHIKV 株在病毒 nsP3 基因的末端含有一个保守的终止密码子。然而,已经描述了编码精氨酸密码子而不是终止密码子的 CHIKV 株,对来自加勒比海的 CHIKV 分离株的深度测序分析在该株中鉴定了精氨酸和终止密码子变体。因此,我们假设引入精氨酸突变取代终止密码子可能会影响 CHIKV 的毒力。我们通过将精氨酸突变引入来自斯里兰卡的 CHIKV 株的一种经过良好表征的感染性克隆中来测试这一点,并将该病毒命名为 Opal524R。该突变并未损害病毒复制动力学,尽管如此,Opal524R 病毒在感染小鼠的足部和踝关节中引起的肿胀、炎症和损伤明显减少。此外,与亲本株相比,我们观察到促炎细胞因子和趋化因子的诱导延迟,以及 CD4 T 细胞和 NK 细胞的募集减少。因此,终止密码子在 CHIKV 发病机制中起着重要作用,而与病毒复制无关。基孔肯雅热病毒(CHIKV)是一种蚊媒甲病毒,可引起病毒性关节痛的重大爆发。对 CHIKV 和其他甲病毒的研究表明,nsP3 中的终止密码子高度保守。然而,一些 CHIKV 株和其他甲病毒株在终止密码子中存在突变。这些突变改变了相关甲病毒在哺乳动物和蚊子宿主中的毒力。在这里,我们报告称,来自加勒比岛屿最近爆发的 CHIKV 株的临床分离株含有编码终止密码子或精氨酸突变的病毒混合物。将终止密码子突变为精氨酸残基可减轻小鼠模型中 CHIKV 诱导的疾病。与感染含有终止密码子的亲本病毒相比,感染精氨酸突变株会导致有限的肿胀和炎症,以及病理免疫介质的募集减少,包括 CD4 T 细胞和 NK 细胞。我们提出终止密码子在诱导严重 CHIKV 疾病中起着至关重要的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1521/5686535/f3401a03c059/mbo0061735820001.jpg

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