首页> 外文期刊>Vaccine >A novel human parainfluenza virus type 1 (HPIV1) with separated P and C genes is useful for generating C gene mutants for evaluation as live-attenuated virus vaccine candidates.
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A novel human parainfluenza virus type 1 (HPIV1) with separated P and C genes is useful for generating C gene mutants for evaluation as live-attenuated virus vaccine candidates.

机译:具有分离的P和C基因的新型1型人类副流感病毒(HPIV1)可用于生成C基因突变体,以评估其为减毒活疫苗的候选者。

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摘要

A novel recombinant human parainfluenza virus type 1 (rHPIV1), rHPIV1-C+P, in which the overlapping open reading frames of the C and P genes were separated in order to introduce mutations into the C gene without affecting P, was generated. Infectious rHPIV1-C+P was readily recovered and replicated as efficiently as HPIV1 wild type (wt) in vitro and in African green monkeys (AGMs). rHPIV1-C+P expressed increased levels of C protein and, surprisingly, activated the type I IFN and apoptosis responses more strongly than HPIV1 wt. rHPIV1-C+P provided a useful backbone for recovering an attenuated P/C gene mutation ( Delta 84-85), which was previously unrecoverable, likely due to detrimental effects of the deletion on the P protein. rHPIV1-C Delta 84-85+P and an additional mutant, rHPIV1-C Delta 169-170+P, were found to replicate to similar titers in vitro and to activate the type I IFN and apoptosis responses to a similar degree as rHPIV1-C+P. rHPIV1-C Delta 84-85+P was found to be highly attenuated in AGMs, and all viruses were immunogenic and effective in protecting AGMs against challenge with HPIV1 wt. rHPIV1-C Delta 84-85+P will be investigated as a potential live-attenuated vaccine candidate for HPIV1.
机译:产生了一种新型的重组人副流感病毒1型(rHPIV1)rHPIV1-C + P,其中分离了C和P基因的重叠开放阅读框,以便将突变引入C基因而不影响P。传染性rHPIV1-C + P可以很容易地被回收并在体外和在非洲绿猴(AGM)中以与HPIV1野生型(wt)一样高的效率复制。 rHPIV1-C + P表达的C蛋白水平升高,并且令人惊讶的是,与HPIV1 wt相比,更强烈地激活了I型IFN和凋亡反应。 rHPIV1-C + P为恢复减毒的P / C基因突变(Delta 84-85)提供了有用的骨架,该突变以前是无法恢复的,可能是由于缺失对P蛋白的不利影响。发现rHPIV1-C Delta 84-85 + P和另一个突变体rHPIV1-C Delta 169-170 + P在体外可复制至相似的效价并激活I型IFN和凋亡反应,其程度与rHPIV1-C + P相似。发现rHPIV1-C Delta 84-85 + P在AGM中高度减毒,所有病毒均具有免疫原性,可有效保护AGM免受HPIV1 wt的攻击。 rHPIV1-C Delta 84-85 + P将作为HPIV1的潜在减毒活疫苗进行研究。

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