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VaximmutorDB:一个基于网络的疫苗免疫因子数据库及其在理解疫苗诱导免疫机制中的应用。

VaximmutorDB: A Web-Based Vaccine Immune Factor Database and Its Application for Understanding Vaccine-Induced Immune Mechanisms.

机构信息

College of Literature, Science, and the Arts, University of Michigan, Ann Arbor, MI, United States.

Central Michigan College of Medicine, Mt. Pleasant, MI, United States.

出版信息

Front Immunol. 2021 Mar 12;12:639491. doi: 10.3389/fimmu.2021.639491. eCollection 2021.

Abstract

Vaccines stimulate various immune factors critical to protective immune responses. However, a comprehensive picture of vaccine-induced immune factors and pathways have not been systematically collected and analyzed. To address this issue, we developed VaximmutorDB, a web-based database system of vaccine immune factors (abbreviated as "vaximmutors") manually curated from peer-reviewed articles. VaximmutorDB currently stores 1,740 vaccine immune factors from 13 host species (e.g., human, mouse, and pig). These vaximmutors were induced by 154 vaccines for 46 pathogens. Top 10 vaximmutors include three antibodies (IgG, IgG2a and IgG1), Th1 immune factors (IFN-γ and IL-2), Th2 immune factors (IL-4 and IL-6), TNF-α, CASP-1, and TLR8. Many enriched host processes (e.g., stimulatory C-type lectin receptor signaling pathway, SRP-dependent cotranslational protein targeting to membrane) and cellular components (e.g., extracellular exosome, nucleoplasm) by all the vaximmutors were identified. Using influenza as a model, live attenuated and killed inactivated influenza vaccines stimulate many shared pathways such as signaling of many interleukins (including IL-1, IL-4, IL-6, IL-13, IL-20, and IL-27), interferon signaling, MARK1 activation, and neutrophil degranulation. However, they also present their unique response patterns. While live attenuated influenza vaccine FluMist induced significant signal transduction responses, killed inactivated influenza vaccine Fluarix induced significant metabolism of protein responses. Two different Yellow Fever vaccine (YF-Vax) studies resulted in overlapping gene lists; however, they shared more portions of pathways than gene lists. Interestingly, live attenuated YF-Vax simulates significant metabolism of protein responses, which was similar to the pattern induced by killed inactivated Fluarix. A user-friendly web interface was generated to access, browse and search the VaximmutorDB database information. As the first web-based database of vaccine immune factors, VaximmutorDB provides systematical collection, standardization, storage, and analysis of experimentally verified vaccine immune factors, supporting better understanding of protective vaccine immunity.

摘要

疫苗可刺激多种对保护性免疫应答至关重要的免疫因子。然而,疫苗诱导的免疫因子和途径尚未得到系统地收集和分析。为了解决这个问题,我们开发了 VaximmutorDB,这是一个基于网络的疫苗免疫因子数据库系统(简称“vaximmutors”),这些免疫因子是从同行评审的文章中手动整理而来的。VaximmutorDB 目前存储了来自 13 个宿主物种(如人类、小鼠和猪)的 154 种疫苗诱导的 1740 种疫苗免疫因子。这些 vaximmutors 是由 46 种病原体的 154 种疫苗诱导产生的。排名前十的 vaximmutors 包括三种抗体(IgG、IgG2a 和 IgG1)、Th1 免疫因子(IFN-γ 和 IL-2)、Th2 免疫因子(IL-4 和 IL-6)、TNF-α、CASP-1 和 TLR8。所有 vaximmutors 都鉴定出许多丰富的宿主过程(例如,刺激型 C 型凝集素受体信号通路、SRP 依赖性共翻译蛋白靶向膜)和细胞成分(例如,细胞外外泌体、核质)。以流感为例,活减毒和灭活流感疫苗刺激许多共同的途径,如许多白细胞介素(包括 IL-1、IL-4、IL-6、IL-13、IL-20 和 IL-27)、干扰素信号转导、MARK1 激活和嗜中性粒细胞脱颗粒的信号转导。然而,它们也呈现出独特的反应模式。活减毒流感疫苗 FluMist 诱导了显著的信号转导反应,而灭活流感疫苗 Fluarix 诱导了显著的蛋白质代谢反应。两项不同的黄热病疫苗(YF-Vax)研究产生了重叠的基因列表;然而,它们共享的途径部分多于基因列表。有趣的是,活减毒 YF-Vax 模拟了显著的蛋白质代谢反应,这与灭活 Fluarix 诱导的模式相似。生成了一个用户友好的网络界面,用于访问、浏览和搜索 VaximmutorDB 数据库信息。作为第一个基于网络的疫苗免疫因子数据库,VaximmutorDB 提供了系统的收集、标准化、存储和分析经过实验验证的疫苗免疫因子,支持更好地理解保护性疫苗免疫。

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