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A single amino acid substitution in the core protein of West Nile virus increases resistance to acidotropic compounds.

PLoS ONE. 2013; 
Martín-Acebes MA, Blázquez AB, de Oya NJ, Escribano-Romero E, Shi PY, Saiz JC.
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Gene Synthesis To this end, the DNA fragment (3652 base pairs) encompassed between BamHI and SphI restriction sites of pFLWNV was synthesized in vitro containing the nucleotide replacement A103G on the cDNA of WNV by GenScript (Piscataway, NJ). Get A Quote

摘要

West Nile virus (WNV) is a worldwide distributed mosquito-borne flavivirus that naturally cycles between birds and mosquitoes, although it can infect multiple vertebrate hosts including horses and humans. This virus is responsible for recurrent epidemics of febrile illness and encephalitis, and has recently become a global concern. WNV requires to transit through intracellular acidic compartments at two different steps to complete its infectious cycle. These include fusion between the viral envelope and the membrane of endosomes during viral entry, and virus maturation in the trans-Golgi network. In this study, we followed a genetic approach to study the connections between viral components and acidic pH. A WNV... More

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