Human antibody responses after dengue virus infection are highly cross-reactive to Zika virus

Author:

Priyamvada Lalita,Quicke Kendra M.,Hudson William H.,Onlamoon Nattawat,Sewatanon Jaturong,Edupuganti Srilatha,Pattanapanyasat Kovit,Chokephaibulkit Kulkanya,Mulligan Mark J.,Wilson Patrick C.,Ahmed Rafi,Suthar Mehul S.,Wrammert Jens

Abstract

Zika virus (ZIKV) is an emerging mosquito-borne flavivirus of significant public health concern. ZIKV shares a high degree of sequence and structural homology compared with other flaviviruses, including dengue virus (DENV), resulting in immunological cross-reactivity. Improving our current understanding of the extent and characteristics of this immunological cross-reactivity is important, as ZIKV is presently circulating in areas that are highly endemic for dengue. To assess the magnitude and functional quality of cross-reactive immune responses between these closely related viruses, we tested acute and convalescent sera from nine Thai patients with PCR-confirmed DENV infection against ZIKV. All of the sera tested were cross-reactive with ZIKV, both in binding and in neutralization. To deconstruct the observed serum cross-reactivity in depth, we also characterized a panel of DENV-specific plasmablast-derived monoclonal antibodies (mAbs) for activity against ZIKV. Nearly half of the 47 DENV-reactive mAbs studied bound to both whole ZIKV virion and ZIKV lysate, of which a subset also neutralized ZIKV. In addition, both sera and mAbs from the dengue-infected patients enhanced ZIKV infection of Fc gamma receptor (FcγR)-bearing cells in vitro. Taken together, these findings suggest that preexisting immunity to DENV may impact protective immune responses against ZIKV. In addition, the extensive cross-reactivity may have implications for ZIKV virulence and disease severity in DENV-experienced populations.

Funder

HHS | NIH | National Institute of Allergy and Infectious Diseases

Mahidol University

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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