《CELL,6月5日,Identification of SARS-CoV-2 Vaccine Epitopes Predicted to Induce Long-term Population-Scale Immunity》

  • 来源专题:COVID-19科研动态监测
  • 编译者: xuwenwhlib
  • 发布时间:2020-06-07
  • Identification of SARS-CoV-2 Vaccine Epitopes Predicted to Induce Long-term Population-Scale Immunity

    Mark Yarmarkovich

    John M. Warrington

    Alvin Farrel

    John M. Maris 4

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    Open AccessPublished:June 05, 2020DOI:https://doi.org/10.1016/j.xcrm.2020.100036

    Summary

    Here we propose a SARS-CoV-2 vaccine design concept based on identification of highly conserved regions of the viral genome and newly acquired adaptations, both predicted to generate epitopes presented on MHC class I and II across the vast majority of the population. We further prioritize genomic regions that generate highly dissimilar peptides from the human proteome, and are also predicted to produce B cell epitopes. We propose sixty-five 33mer peptide sequences, a subset of which can be tested using DNA or mRNA delivery strategies. These include peptides that are contained within evolutionarily divergent regions of the spike protein reported to increase infectivity through increased binding to the ACE2 receptor and within a newly evolved furin cleavage site thought to increase membrane fusion. Validation and implementation of this vaccine concept could specifically target specific vulnerabilities of SARS-CoV-2 and should engage a robust adaptive immune response in the vast majority of the population.

  • 原文来源:https://www.cell.com/cell-reports-medicine/fulltext/S2666-3791(20)30048-3
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  • 《Nature,5月6日,Bioinformatic prediction of potential T cell epitopes for SARS-Cov-2》

    • 来源专题:COVID-19科研动态监测
    • 编译者:zhangmin
    • 发布时间:2020-05-07
    • Bioinformatic prediction of potential T cell epitopes for SARS-Cov-2 Kazuma Kiyotani, Yujiro Toyoshima, Kensaku Nemoto & Yusuke Nakamura Journal of Human Genetics (2020) Abstract To control and prevent the current COVID-19 pandemic, the development of novel vaccines is an emergent issue. In addition, we need to develop tools that can measure/monitor T-cell and B-cell responses to know how our immune system is responding to this deleterious virus. However, little information is currently available about the immune target epitopes of novel coronavirus (SARS-CoV-2) to induce host immune responses. Through a comprehensive bioinformatic screening of potential epitopes derived from the SARS-CoV-2 sequences for HLAs commonly present in the Japanese population, we identified 2013 and 1399 possible peptide epitopes that are likely to have the high affinity (<0.5%- and 2%-rank, respectively) to HLA class I and II molecules, respectively, that may induce CD8+ and CD4+ T-cell responses.
  • 《6月5日_费城儿童医院鉴定预计可导致长期人群免疫的SARS-CoV-2疫苗抗原表位》

    • 来源专题:COVID-19科研动态监测
    • 编译者:zhangmin
    • 发布时间:2020-06-07
    • 1.时间:2020年6月5日 2.机构或团队:费城儿童医院 3.事件概要: Cell Reports Medicine 于6月5日发表了费城儿童医院的文章“Identification of SARS-CoV-2 Vaccine Epitopes Predicted to Induce Long-term Population-Scale Immunit”,研究人员基于病毒基因组的高度保守区域的识别和新获得的适应性,提出了SARS-CoV-2疫苗设计概念,两者均预计会在绝大多数人群中产生I类和II类MHC抗原表位。研究人员进一步确定了从人类蛋白质组中产生高度不同的多肽的基因组区域的优先级,并且还预测它们也会产生B细胞表位。研究人员提出了65个33mer多肽序列,其中一部分可以使用DNA或mRNA递送策略进行测试。这些多肽包括据报道通过增加与ACE2受体的结合而增加感染性的刺突蛋白的进化分歧区域中所包含的多肽,以及被认为增加膜融合作用的新进化的弗林蛋白酶切割位点中所包含的多肽。文章表示,该疫苗概念的验证和实施可以专门针对SARS-CoV-2的特定弱点,并应在绝大多数人群中产生强大的适应性免疫应答。 4.附件: 原文链接:https://www.cell.com/cell-reports-medicine/fulltext/S2666-3791(20)30048-3