Vaccination with different group 2 influenza subtypes alters epitope targeting and breadth of hemagglutinin stem–specific human B cells

IF 15.8 1区 医学 Q1 CELL BIOLOGY Science Translational Medicine Pub Date : 2025-01-01 DOI:10.1126/scitranslmed.adr8373
Grace E. Mantus, Ankita J. Chopde, Jason Gorman, Lauren Y. Cominsky, Amine Ourahmane, Adrian Creanga, Geoffrey D. Shimberg, Rebecca A. Gillespie, David J. Van Wazer, Tongqing Zhou, Suprabhath R. Gajjala, Connor Williams, Emma Maestle, Douglas S. Reed, Leonid Serebryannyy, Pamela Costner, Lasonji Holman, Joseph P. Casazza, Richard A. Koup, Lesia K. Dropulic, Peter D. Kwong, Adrian B. McDermott, Masaru Kanekiyo, Sarah F. Andrews
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Abstract

The conserved influenza hemagglutinin stem, which is a target of cross-neutralizing antibodies, is now used in vaccine strategies focused on protecting against influenza pandemics. Antibody responses to group 1 stem have been extensively characterized, but little is known about group 2. Here, we characterized the stem-specific repertoire of individuals vaccinated with one of three group 2 influenza subtypes (H3, H7, or H10). Epitope mapping revealed two epitope supersites on the group 2 stem. Antibodies targeting the central epitope were broadly cross-reactive, whereas antibodies targeting the lower epitope had narrower breadth but higher potency against H3 subtypes. The ratio of B cells targeting each of the supersites varied with the vaccine subtype, leading to differences in the cross-reactivity of the B cell response. Our findings suggest that vaccine strategies targeting both group 2 stem epitopes would be complementary, eliciting broader and more potent protection against both seasonal and pandemic influenza strains.
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不同2组流感亚型疫苗接种改变了血凝素干细胞特异性人B细胞的表位靶向和广度
保守的流感血凝素干细胞是交叉中和抗体的靶标,现在被用于预防流感大流行的疫苗策略。对第1组的抗体反应已被广泛表征,但对第2组的抗体反应知之甚少。在这里,我们描述了接种三种2组流感亚型(H3, H7或H10)之一的个体的茎特异性库。表位定位在2组茎上发现了两个表位重叠位点。靶向中心表位的抗体具有广泛的交叉反应性,而靶向较低表位的抗体具有较窄的宽度,但对H3亚型具有较高的效力。针对每个重叠位点的B细胞比例因疫苗亚型而异,导致B细胞反应的交叉反应性不同。我们的研究结果表明,针对2组干细胞表位的疫苗策略将是互补的,从而对季节性和大流行性流感毒株产生更广泛和更有效的保护。
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来源期刊
Science Translational Medicine
Science Translational Medicine CELL BIOLOGY-MEDICINE, RESEARCH & EXPERIMENTAL
CiteScore
26.70
自引率
1.20%
发文量
309
审稿时长
1.7 months
期刊介绍: Science Translational Medicine is an online journal that focuses on publishing research at the intersection of science, engineering, and medicine. The goal of the journal is to promote human health by providing a platform for researchers from various disciplines to communicate their latest advancements in biomedical, translational, and clinical research. The journal aims to address the slow translation of scientific knowledge into effective treatments and health measures. It publishes articles that fill the knowledge gaps between preclinical research and medical applications, with a focus on accelerating the translation of knowledge into new ways of preventing, diagnosing, and treating human diseases. The scope of Science Translational Medicine includes various areas such as cardiovascular disease, immunology/vaccines, metabolism/diabetes/obesity, neuroscience/neurology/psychiatry, cancer, infectious diseases, policy, behavior, bioengineering, chemical genomics/drug discovery, imaging, applied physical sciences, medical nanotechnology, drug delivery, biomarkers, gene therapy/regenerative medicine, toxicology and pharmacokinetics, data mining, cell culture, animal and human studies, medical informatics, and other interdisciplinary approaches to medicine. The target audience of the journal includes researchers and management in academia, government, and the biotechnology and pharmaceutical industries. It is also relevant to physician scientists, regulators, policy makers, investors, business developers, and funding agencies.
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