GROWTH-RESTRICTED DENGUE VIRUS MUTANTS CONTAINING DELETIONS IN THE 5' NONCODING REGION OF THE RNA GENOME

被引:113
作者
CAHOUR, A
PLETNEV, A
VAZEILLEFALCOZ, M
ROSEN, L
LAI, CJ
机构
[1] NIAID, INFECT DIS LAB, MOLEC VIRAL BIOL SECT, BETHESDA, MD 20892 USA
[2] INST PASTEUR, UNITE ECOL SYST VECTORIELS, F-75724 PARIS 15, FRANCE
关键词
D O I
10.1006/viro.1995.1052
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The dengue type 4 virus (DEN4) RNA genome contains a 101-nt 5' noncoding (NC) sequence which is predicted to form a stable secondary structure. DEN4 cDNA from which infectious RNA can be transcribed was used to engineer deletions in the 5' NC region for functional analysis of RNA structure and for isolation of DEN4 mutants that could be evaluated as candidates for use in a live attenuated vaccine. Eleven distinct deletions in the region of the DEN4 genome between nts 18 and 98 were constructed; each mutation was predicted to alter or disrupt the local base-parings in the 5' NC RNA structure. An infectious virus was not recovered from the RNA transcripts of five of these deletion mutants. Significantly, four of the five apparently lethal deletions were located in a 5- to 6-nt base-paired region of a predicted long stem or adjacent to it. In contrast, with one exception, mutants which yielded infectious virus had deletions which were located in a loop or short stem region. The effect of the deletions on the efficiency of translation of viral RNA transcripts was examined in vitro. The RNA transcripts of deletion constructs which did not yield viable virus were translated at an efficiency ranging from 40 to 160% that of wild-type virus transcripts. The translation efficiency of infectious RNA transcripts also varied. Deletion mutants recovered from RNA transcripts that exhibited low to moderate efficiency of translation had a small plaque morphology and exhibited reduced growth in simian LLC-MK(2) and mosquito C6/36 cells compared to the wild-type virus. Among the 11 mutant constructs, deletion of nts 82-87 caused the greatest reduction in translation efficiency. Nevertheless, an infectious virus was recovered from LLC-MK(2) cells transfected with the RNA transcripts of mutant d(82-87). The progeny of this mutant produced small plaques on LLC-MK(2) cells and grew to low titer in these cells. Unlike wild-type DEN4 or other DEN4 deletion mutants tested, mutant d(82-87) failed to produce plaques on C6/36 cells and was also replication-defective in Aedes aegypti and Aedes albopictus following intrathoracic inoculation. (C) 1995 Academic Press, Inc.
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页码:68 / 76
页数:9
相关论文
共 41 条
[1]   POLIOVIRUS RNA-SYNTHESIS UTILIZES AN RNP COMPLEX FORMED AROUND THE 5'-END OF VIRAL-RNA [J].
ANDINO, R ;
RIECKHOF, GE ;
ACHACOSO, PL ;
BALTIMORE, D .
EMBO JOURNAL, 1993, 12 (09) :3587-3598
[2]  
BANCROFT WH, 1979, PAN AM HLTH ORG SCI, V375, P173
[3]   IDENTIFICATION OF MONOCLONAL-ANTIBODIES THAT DISTINGUISH BETWEEN 17D-204 AND OTHER STRAINS OF YELLOW-FEVER VIRUS [J].
BARRETT, ADT ;
MATHEWS, JH ;
MILLER, BR ;
MEDLEN, AR ;
LEDGER, TN ;
ROEHRIG, JT .
JOURNAL OF GENERAL VIROLOGY, 1990, 71 :13-18
[4]   HIV-1 REV REGULATION INVOLVES RECOGNITION OF NON-WATSON-CRICK BASE-PAIRS IN VIRAL-RNA [J].
BARTEL, DP ;
ZAPP, ML ;
GREEN, MR ;
SZOSTAK, JW .
CELL, 1991, 67 (03) :529-536
[5]   CONSTRUCTION OF INTERTYPIC CHIMERIC DENGUE VIRUSES BY SUBSTITUTION OF STRUCTURAL PROTEIN GENES [J].
BRAY, M ;
LAI, CJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1991, 88 (22) :10342-10346
[6]   SEQUENCE AND SECONDARY STRUCTURE-ANALYSIS OF THE 5'-TERMINAL REGION OF FLAVIVIRUS GENOME RNA [J].
BRINTON, MA ;
DISPOTO, JH .
VIROLOGY, 1988, 162 (02) :290-299
[7]   CLEAVAGE OF THE DENGUE VIRUS POLYPROTEIN AT THE NS3/NS4A AND NS4B/NS5 JUNCTIONS IS MEDIATED BY VIRAL PROTEASE NS2B-NS3, WHEREAS NS4A/NS4B MAY BE PROCESSED BY A CELLULAR PROTEASE [J].
CAHOUR, A ;
FALGOUT, B ;
LAI, CJ .
JOURNAL OF VIROLOGY, 1992, 66 (03) :1535-1542
[8]   MUTATIONS WITHIN THE 5' NONTRANSLATED REGION OF HEPATITIS-A VIRUS-RNA WHICH ENHANCE REPLICATION IN BS-C-1 CELLS [J].
DAY, SP ;
MURPHY, P ;
BROWN, EA ;
LEMON, SM .
JOURNAL OF VIROLOGY, 1992, 66 (11) :6533-6540
[9]  
DELANGEL RM, 1989, P NATL ACAD SCI USA, V86, P8299
[10]   PROPER PROCESSING OF DENGUE VIRUS NONSTRUCTURAL GLYCOPROTEIN-NS1 REQUIRES THE N-TERMINAL HYDROPHOBIC SIGNAL SEQUENCE AND THE DOWNSTREAM NONSTRUCTURAL PROTEIN-NS2A [J].
FALGOUT, B ;
CHANOCK, R ;
LAI, CJ .
JOURNAL OF VIROLOGY, 1989, 63 (05) :1852-1860