巨细胞病毒 UL44 蛋白可诱导小鼠产生强烈的 T 细胞免疫反应。

IF 4.5 2区 医学 Q1 PHARMACOLOGY & PHARMACY Antiviral research Pub Date : 2024-05-15 DOI:10.1016/j.antiviral.2024.105914
Francisco J. Mancebo , Marcos Nuévalos , Jaanam Lalchandani , Antonio J. Martín Galiano , Mario Fernández-Ruiz , José María Aguado , Estéfani García-Ríos , Pilar Pérez-Romero
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引用次数: 0

摘要

由于巨细胞病毒感染对免疫力低下者的严重影响,疫苗的开发已被列为当务之急。然而,尽管已经做出了很多努力,但目前还没有可用于临床的疫苗。我们设计了一种方法来识别能诱导广泛免疫反应的新 CMV 抗原,以用于未来的疫苗配方。我们使用了 28 位肾移植受者的血清样本,通过 Western 印迹法鉴定了患者血清样本中抗体可识别的病毒蛋白。大多数血清样本中都检测到了一条大约 45 kDa 的条带,被确定为 UL44。在接种了三剂 UL44-pcDNA DNA 疫苗的 BALB/c 小鼠中测试了 UL44 的免疫原性。UL44 可引起强烈的抗体反应和 CMV 特异性细胞反应。通过生物信息学分析,我们证明了 UL44 是一种高度保守的蛋白质,它包含的表位能够激活世界人口中最常见的 HLA 等位基因的 CD8 淋巴细胞。我们构建的 UL44 ORF 缺失突变病毒不产生病毒后代,这表明 UL44 是一种重要的病毒蛋白。此外,其他作者也证明 UL44 是感染后含量最高的病毒蛋白之一,并认为 UL44 在病毒复制中起着重要作用。总之,我们的数据表明,UL44 是一种强效抗原,由于其含量丰富,它可能是疫苗配方中的理想候选抗原。
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Cytomegalovirus UL44 protein induces a potent T-cell immune response in mice

Due to the severity of CMV infection in immunocompromised individuals the development of a vaccine has been declared a priority. However, despite the efforts made there is no yet a vaccine available for clinical use. We designed an approach to identify new CMV antigens able to inducing a broad immune response that could be used in future vaccine formulations.

We have used serum samples from 28 kidney transplant recipients, with a previously acquired CMV-specific immune response to identify viral proteins that were recognized by the antibodies present in the patient serum samples by Western blot. A band of approximately 45 kDa, identified as UL44, was detected by most serum samples. UL44 immunogenicity was tested in BALB/c mice that received three doses of the UL44-pcDNA DNA vaccine. UL44 elicited both, a strong antibody response and CMV-specific cellular response. Using bioinformatic analysis we demonstrated that UL44 is a highly conserved protein and contains epitopes that are able to activate CD8 lymphocytes of the most common HLA alleles in the world population. We constructed a UL44 ORF deletion mutant virus that produced no viral progeny, suggesting that UL44 is an essential viral protein. In addition, other authors have demonstrated that UL44 is one of the most abundant viral proteins after infection and have suggested an essential role of UL44 in viral replication. Altogether, our data suggests that UL44 is a potent antigen, and favored by its abundance, it may be a good candidate to include in a vaccine formulation.

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来源期刊
Antiviral research
Antiviral research 医学-病毒学
CiteScore
17.10
自引率
3.90%
发文量
157
审稿时长
34 days
期刊介绍: Antiviral Research is a journal that focuses on various aspects of controlling viral infections in both humans and animals. It is a platform for publishing research reports, short communications, review articles, and commentaries. The journal covers a wide range of topics including antiviral drugs, antibodies, and host-response modifiers. These topics encompass their synthesis, in vitro and in vivo testing, as well as mechanisms of action. Additionally, the journal also publishes studies on the development of new or improved vaccines against viral infections in humans. It delves into assessing the safety of drugs and vaccines, tracking the evolution of drug or vaccine-resistant viruses, and developing effective countermeasures. Another area of interest includes the identification and validation of new drug targets. The journal further explores laboratory animal models of viral diseases, investigates the pathogenesis of viral diseases, and examines the mechanisms by which viruses avoid host immune responses.
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