4.7 Article

Delineating antibody recognition against Zika virus during natural infection

期刊

JCI INSIGHT
卷 2, 期 12, 页码 -

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/jci.insight.93042

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资金

  1. Guangzhou Science and Technology Program for Public Wellbeing [2014Y2-00185, 2014Y2-00550, 201508020263]
  2. Special Program of Guangdong Provincial Department of Science and Technology [2016A020248001]
  3. Guangzhou Health Care and Cooperation Innovation Major grant
  4. National Natural Science Foundation Award [81530065, 81590762]
  5. National Key Plan for Scientific Research and Development of China [2016YFC1200902]
  6. Ministry of Science and Technology of China [2014CB542500-03]

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Zika virus (ZIKV) is an emerging mosquito-transmitted flavivirus that shares a considerable degree of homology with dengue virus (DENV). Here, we examined longitudinal antibody response against ZIKV during natural infection in 2 convalescent individuals. By decomposing the antibody recognition into DI/DII and DIII of the E glycoprotein, we showed their development in humans followed a spatiotemporal hierarchy. Plasma binding to DI/DII appeared to peak and wane during early infection with extensive cross-reactivity with DI/DII of DENV. Binding to DIII, however, peaked early but persisted months into the infection without detectable cross-reactivity with DIII of DENV. A clear trend of increase in DIII-specific neutralizing activity was observed over the course of infection. mAbs isolated during early infection are largely DI/DII specific, weakly neutralizing, and highly cross-reactive with DENV, while those from later infection are more diverse in recognition, potently neutralizing, and ZIKV specific. The most potent neutralizing mAb targeting the DIII provided 100% protection in mice from lethal ZIKV infection and could therefore serve as a promising candidate for antibody-based therapy and prevention. The dynamic features unveiled here will assist us to better understand the pathogenesis of ZIKV infection and inform rational design of vaccines.

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