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1.
J Biol Chem ; 286(25): 22521-34, 2011 Jun 24.
Artículo en Inglés | MEDLINE | ID: mdl-21515677

RESUMEN

Using the massively parallel genetic algorithm for RNA folding, we show that the core region of the 3'-untranslated region of the dengue virus (DENV) RNA can form two dumbbell structures (5'- and 3'-DBs) of unequal frequencies of occurrence. These structures have the propensity to form two potential pseudoknots between identical five-nucleotide terminal loops 1 and 2 (TL1 and TL2) and their complementary pseudoknot motifs, PK2 and PK1. Mutagenesis using a DENV2 replicon RNA encoding the Renilla luciferase reporter indicated that all four motifs and the conserved sequence 2 (CS2) element within the 3'-DB are important for replication. However, for translation, mutation of TL1 alone does not have any effect; TL2 mutation has only a modest effect in translation, but translation is reduced by ∼60% in the TL1/TL2 double mutant, indicating that TL1 exhibits a cooperative synergy with TL2 in translation. Despite the variable contributions of individual TL and PK motifs in translation, WT levels are achieved when the complementarity between TL1/PK2 and TL2/PK1 is maintained even under conditions of inhibition of the translation initiation factor 4E function mediated by LY294002 via a noncanonical pathway. Taken together, our results indicate that the cis-acting RNA elements in the core region of DENV2 RNA that include two DB structures are required not only for RNA replication but also for optimal translation.


Asunto(s)
Regiones no Traducidas 3'/genética , Virus del Dengue/genética , Virus del Dengue/fisiología , Biosíntesis de Proteínas/genética , ARN Viral/genética , Secuencias Reguladoras de Ácido Ribonucleico/genética , Replicación Viral/genética , Algoritmos , Secuencia de Bases , Línea Celular , Secuencia Conservada , Virus del Dengue/metabolismo , Luciferasas de Renilla/genética , Datos de Secuencia Molecular , Conformación de Ácido Nucleico , ARN Viral/biosíntesis , ARN Viral/química , Replicón/genética
2.
Virus Genes ; 43(1): 18-26, 2011 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-21461924

RESUMEN

A live-attenuated dengue-2 virus strain S16803 vaccine candidate that is immunogenic and safe in humans was derived by 50 passages in primary dog kidney (PDK) cells. To identify mutations associated with attenuation of the dengue-2 PDK50 vaccine strain, we determined the nucleotide changes that arose during PDK passage of the dengue-2 virus. Thirteen mutations distinguished the PDK50 virus from low-passage parent resulting in amino acid substitutions in the premembrane (E89G), envelope (E202K, N203D), nonstructural proteins NS1 (A43T), NS2A (L181F), NS2B (I26V), and NS4B (I/T108T, L112F). In addition, the PDK50 virus contained a C to T change of nucleotide 57 in the 5' non-coding region and four silent mutations of nucleotides 591, 987, 6471, and 8907. An infectious PDK50 cDNA clone virus was produced and characterized for growth kinetics in monkey (LLC-MK(2), Vero) and mosquito (C6/36) cells. Identification of mutations in the vaccine strain and availability of an infectious clone will permit systematic analysis of the importance of individual or collective mutations on attenuation of dengue virus.


Asunto(s)
Vacunas contra el Dengue/genética , Virus del Dengue/genética , Virus del Dengue/patogenicidad , Mutación Puntual , Aedes , Sustitución de Aminoácidos/genética , Animales , Línea Celular , Virus del Dengue/crecimiento & desarrollo , Haplorrinos , Datos de Secuencia Molecular , ARN Viral/genética , Análisis de Secuencia de ADN , Pase Seriado , Vacunas Atenuadas/genética , Proteínas Virales/genética , Virulencia , Cultivo de Virus
3.
J Virol ; 76(7): 3318-28, 2002 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-11884557

RESUMEN

We recently described the derivation of a dengue serotype 2 virus (DEN2mutF) that exhibited a host range-restricted phenotype; it was severely impaired for replication in cultured mosquito cells (C6/36 cells). DEN2mutF virus had selected mutations in genomic sequences predicted to form a 3' stem-loop structure (3'-SL) that is conserved among all flavivirus species. The 3'-SL constitutes the downstream terminal similar95 nucleotides of the 3' noncoding region in flavivirus RNA. Here we report the introduction of these same mutational changes into the analogous region of an infectious DNA derived from the genome of a human-virulent dengue serotype 1 virus (DEN1), strain Western Pacific (DEN1WP). The resulting DEN1 mutant (DEN1mutF) exhibited a host range-restricted phenotype similar to that of DEN2mutF virus. DEN1mutF virus was attenuated in a monkey model for dengue infection in which viremia is taken as a correlate of human virulence. In spite of the markedly reduced levels of viremia that it induced in monkeys compared to DEN1WP, DEN1mutF was highly immunogenic. In addition, DEN1mutF-immunized monkeys retained high levels of neutralizing antibodies in serum and were protected from challenge with high doses of the DEN1WP parent for as long as 17 months after the single immunizing dose. Phenotypic revertants of DEN1mutF and DEN2mutF were each detected after a total of 24 days in C6/36 cell cultures. Complete nucleotide sequence analysis of DEN1mutF RNA and that of a revertant virus, DEN1mutFRev, revealed that (i) the DEN1mutF genome contained no additional mutations upstream from the 3'-SL compared to the DEN1WP parent genome and (ii) the DEN1mutFRev genome contained de novo mutations, consistent with our previous hypothesis that the defect in DEN2mutF replication in C6/36 cells was at the level of RNA replication. A strategy for the development of a tetravalent dengue vaccine is discussed.


Asunto(s)
Virus del Dengue/inmunología , Dengue/prevención & control , Inmunización , Animales , Anticuerpos Antivirales/sangre , Secuencia de Bases , ADN Viral/genética , Dengue/sangre , Dengue/inmunología , Virus del Dengue/genética , Virus del Dengue/patogenicidad , Macaca mulatta , Datos de Secuencia Molecular , Mutación , Fenotipo , ARN Viral/genética , Factores de Tiempo , Vacunas Atenuadas , Vacunas Virales , Viremia
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