Matches in SemOpenAlex for { <https://semopenalex.org/work/W2313514108> ?p ?o ?g. }
- W2313514108 abstract "ABSTRACT The live attenuated yellow fever virus (YFV) vaccine 17D stands as a “gold standard” for a successful vaccine. 17D was developed empirically by passaging the wild-type Asibi strain in mouse and chicken embryo tissues. Despite its immense success, the molecular determinants for virulence attenuation and immunogenicity of the 17D vaccine are poorly understood. 17D evolved several mutations in its genome, most of which lie within the envelope (E) protein. Given the major role played by the YFV E protein during virus entry, it has been hypothesized that the residues that diverge between the Asibi and 17D E proteins may be key determinants of attenuation. In this study, we define the process of YFV entry into target cells and investigate its implication in the activation of the antiviral cytokine response. We found that Asibi infects host cells exclusively via the classical clathrin-mediated endocytosis, while 17D exploits a clathrin-independent pathway for infectious entry. We demonstrate that the mutations in the 17D E protein acquired during the attenuation process are sufficient to explain the differential entry of Asibi versus 17D. Interestingly, we show that 17D binds to and infects host cells more efficiently than Asibi, which culminates in increased delivery of viral RNA into the cytosol and robust activation of the cytokine-mediated antiviral response. Overall, our study reveals that 17D vaccine and Asibi enter target cells through distinct mechanisms and highlights a link between 17D attenuation, virus entry, and immune activation. IMPORTANCE The yellow fever virus (YFV) vaccine 17D is one of the safest and most effective live virus vaccines ever developed. The molecular determinants for virulence attenuation and immunogenicity of 17D are poorly understood. 17D was generated by serially passaging the virulent Asibi strain in vertebrate tissues. Here we examined the entry mechanisms engaged by YFV Asibi and the 17D vaccine. We found the two viruses use different entry pathways. We show that the mutations differentiating the Asibi envelope (E) protein from the 17D E protein, which arose during attenuation, are key determinants for the use of these distinct entry routes. Finally, we demonstrate that 17D binds and enters host cells more efficiently than Asibi. This results in a higher uptake of viral RNA into the cytoplasm and consequently a greater cytokine-mediated antiviral response. Overall, our data provide new insights into the biology of YFV infection and the mechanisms of viral attenuation." @default.
- W2313514108 created "2016-06-24" @default.
- W2313514108 creator A5008504422 @default.
- W2313514108 creator A5014852438 @default.
- W2313514108 creator A5021861148 @default.
- W2313514108 creator A5033383474 @default.
- W2313514108 creator A5040644322 @default.
- W2313514108 creator A5043421771 @default.
- W2313514108 creator A5044719536 @default.
- W2313514108 creator A5044934855 @default.
- W2313514108 creator A5048604993 @default.
- W2313514108 creator A5056285356 @default.
- W2313514108 creator A5068080947 @default.
- W2313514108 date "2016-03-02" @default.
- W2313514108 modified "2023-10-18" @default.
- W2313514108 title "Vaccine and Wild-Type Strains of Yellow Fever Virus Engage Distinct Entry Mechanisms and Differentially Stimulate Antiviral Immune Responses" @default.
- W2313514108 cites W1512465156 @default.
- W2313514108 cites W1561176636 @default.
- W2313514108 cites W1567194265 @default.
- W2313514108 cites W1583085743 @default.
- W2313514108 cites W1967965496 @default.
- W2313514108 cites W1970483666 @default.
- W2313514108 cites W1972431524 @default.
- W2313514108 cites W1974942343 @default.
- W2313514108 cites W1978525119 @default.
- W2313514108 cites W1979382115 @default.
- W2313514108 cites W1987935605 @default.
- W2313514108 cites W1994668150 @default.
- W2313514108 cites W1996031315 @default.
- W2313514108 cites W2000918486 @default.
- W2313514108 cites W2003574450 @default.
- W2313514108 cites W2003760082 @default.
- W2313514108 cites W2010817652 @default.
- W2313514108 cites W2015636028 @default.
- W2313514108 cites W2015704490 @default.
- W2313514108 cites W2016747731 @default.
- W2313514108 cites W2020934094 @default.
- W2313514108 cites W2023863818 @default.
- W2313514108 cites W2026806899 @default.
- W2313514108 cites W2029309873 @default.
- W2313514108 cites W2041414165 @default.
- W2313514108 cites W2041780927 @default.
- W2313514108 cites W2053085788 @default.
- W2313514108 cites W2056125941 @default.
- W2313514108 cites W2058473082 @default.
- W2313514108 cites W2062715434 @default.
- W2313514108 cites W2062741582 @default.
- W2313514108 cites W2069359020 @default.
- W2313514108 cites W2072890381 @default.
- W2313514108 cites W2078646756 @default.
- W2313514108 cites W2080593918 @default.
- W2313514108 cites W2083415621 @default.
- W2313514108 cites W2093990827 @default.
- W2313514108 cites W2097140631 @default.
- W2313514108 cites W2103636107 @default.
- W2313514108 cites W2103662995 @default.
- W2313514108 cites W2104220597 @default.
- W2313514108 cites W2105973954 @default.
- W2313514108 cites W2109185045 @default.
- W2313514108 cites W2109379906 @default.
- W2313514108 cites W2109909805 @default.
- W2313514108 cites W2112032807 @default.
- W2313514108 cites W2120041883 @default.
- W2313514108 cites W2123387190 @default.
- W2313514108 cites W2124780069 @default.
- W2313514108 cites W2125301080 @default.
- W2313514108 cites W2125365106 @default.
- W2313514108 cites W2129393743 @default.
- W2313514108 cites W2129879745 @default.
- W2313514108 cites W2133337899 @default.
- W2313514108 cites W2133588441 @default.
- W2313514108 cites W2134812039 @default.
- W2313514108 cites W2135064888 @default.
- W2313514108 cites W2135550231 @default.
- W2313514108 cites W2142758749 @default.
- W2313514108 cites W2144555452 @default.
- W2313514108 cites W2144902263 @default.
- W2313514108 cites W2151282930 @default.
- W2313514108 cites W2152184048 @default.
- W2313514108 cites W2155259994 @default.
- W2313514108 cites W2155442526 @default.
- W2313514108 cites W2158900785 @default.
- W2313514108 cites W2171178051 @default.
- W2313514108 cites W2175522297 @default.
- W2313514108 cites W2341540545 @default.
- W2313514108 cites W2400728565 @default.
- W2313514108 cites W57227586 @default.
- W2313514108 doi "https://doi.org/10.1128/mbio.01956-15" @default.
- W2313514108 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/4752603" @default.
- W2313514108 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/26861019" @default.
- W2313514108 hasPublicationYear "2016" @default.
- W2313514108 type Work @default.
- W2313514108 sameAs 2313514108 @default.
- W2313514108 citedByCount "47" @default.
- W2313514108 countsByYear W23135141082016 @default.
- W2313514108 countsByYear W23135141082017 @default.
- W2313514108 countsByYear W23135141082018 @default.
- W2313514108 countsByYear W23135141082019 @default.
- W2313514108 countsByYear W23135141082020 @default.
- W2313514108 countsByYear W23135141082021 @default.