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Pathogenicity and Rapid Growth Kinetics of Feline Immunodeficiency Virus Are Linked to 3′ Elements

机译:猫免疫缺陷病毒的致病性和快速生长动力学与3'元件相关。

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摘要

Chimeric viruses constructed between a highly pathogenic Feline Immunodeficiency Virus isolate (FIV-C36) and a less pathogenic but neurotropic strain (FIV-PPR) have been used to map viral genetic determinants of in vivo pathogenicity. Chimeric virus FIV-PCenv, which contains FIV-C36 genome from the 3′ region of pol to upstream of the 3′LTR on an FIV-PPR backbone, was previously shown to be replication-competent in vivo, inducing altered CD4+ T-cell and neutrophil profiles intermediate between parental strains following a delay in viral replication during initial infection. Examination of FIV-PCenv proviral sequences recovered at week 11 post-infection revealed two changes compared to initial viral inoculum; the most significant being arginine to histidine in the integrase region of Pol at residue 813 (R813H). Pooled plasma from the initial in vivo study was used to inoculate a second cohort of cats to determine whether similar virulence and kinetics could be established following primary infection. Viral replication kinetics and immunocyte profiles were monitored in blood, bone marrow, and saliva over a one-year period. Passaged FIV-PCenv again displayed intermediate phenotype between parental strains, but unlike primary experiments, the onset of acute viremia was not delayed. CD4/8 alterations were noted in all groups of animals, though significant changes from controls were delayed in FIV-PPR infected animals compared to FIV-C36 and FIV-PCenv. In vivo passage of FIV-PCenv increased replication-competence relative to the initial molecularly-cloned chimera in association with one adaptive nucleotide change in the 5′ end of the genome relative to primary tissue culture inoculum, while mutations in the 3′ end of the genome were not detected. The results are consistent with the interpretation that 3′ elements contribute to heightened virulence of FIV-C36, and that integrase residue 813 plays an important role in facilitating successful in vivo replication.
机译:在高致病性猫免疫缺陷病毒分离株(FIV-C36)和低致病性但嗜神经性毒株(FIV-PPR)之间构建的嵌合病毒已用于绘制体内致病性的病毒遗传决定因素。嵌合病毒FIV-PCenv包含FIV-PPR主链上从pol的3'区域到3'LTR上游的FIV-C36基因组,以前被证明在体内具有复制能力,可诱导CD4改变。在初次感染期间病毒复制受到延迟后,亲本菌株之间的+ T细胞和嗜中性粒细胞分布在中间。检查感染后第11周恢复的FIV-PCenv前病毒序列,与最初的病毒接种物相比,有两个变化。最重要的是在残基813(R813H)的Pol整合酶区域中的精氨酸至组氨酸。来自初始体内研究的合并血浆用于接种第二批猫,以确定在初次感染后是否可以建立相似的毒力和动力学。在一年的时间内,监测血液,骨髓和唾液中的病毒复制动力学和免疫细胞特征。传代的FIV-PCenv再次显示了亲本菌株之间的中间表型,但与主要实验不同,急性病毒血症的发作并未延迟。尽管与FIV-C36和FIV-PCenv相比,FIV-PPR感染的动物与对照组的显着变化被延迟,但在所有动物组中都注意到了CD4 / 8改变。相对于最初的分子克隆嵌合体,FIV-PCenv的体内传代增加了复制能力,这与基因组5'端相对于原代组织培养接种物的一个适应性核苷酸变化有关,而在FIV-PCenv的3'端发生了突变。未检测到基因组。该结果与以下解释一致:3'元件有助于提高FIV-C36的毒力,并且整合酶残基813在促进成功的体内复制中起重要作用。

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