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  • A stable trimeric influenza...
    Impagliazzo, Antonietta; Milder, Fin; Kuipers, Harmjan; Wagner, Michelle V.; Zhu, Xueyong; Hoffman, Ryan M. B.; van Meersbergen, Ruud; Huizingh, Jeroen; Wanningen, Patrick; Verspuij, Johan; de Man, Martijn; Ding, Zhaoqing; Apetri, Adrian; Kükrer, Başak; Sneekes-Vriese, Eveline; Tomkiewicz, Danuta; Laursen, Nick S.; Lee, Peter S.; Zakrzewska, Anna; Dekking, Liesbeth; Tolboom, Jeroen; Tettero, Lisanne; van Meerten, Sander; Yu, Wenli; Koudstaal, Wouter; Goudsmit, Jaap; Ward, Andrew B.; Meijberg, Wim; Wilson, Ian A.; Radošević, Katarina

    Science (American Association for the Advancement of Science), 09/2015, Letnik: 349, Številka: 6254
    Journal Article

    The identification of human broadly neutralizing antibodies (bnAbs) targeting the hemagglutinin (HA) stem revitalized hopes of developing a universal influenza vaccine. Using a rational design and library approach, we engineered stable HA stem antigens ("mini-HAs") based on an H1 subtype sequence. Our most advanced candidate exhibits structural and bnAb binding properties comparable to those of full-length HA, completely protects mice in lethal heterologous and heterosubtypic challenge models, and reduces fever after sublethal challenge in cynomolgus monkeys. Antibodies elicited by this mini-HA in mice and nonhuman primates bound a wide range of HAs, competed with human bnAbs for HA stem binding, neutralized H5N1 viruses, and mediated antibody-dependent effector activity. These results represent a proof of concept for the design of HA stem mimics that elicit bnAbs against influenza A group 1 viruses.