Roles of the sequence encoding tobacco etch virus capsid protein in genome amplification: Requirements for the translation process and a cis-active element

被引:60
作者
Mahajan, S
Dolja, VV
Carrington, JC
机构
[1] TEXAS A&M UNIV, DEPT BIOL, COLLEGE STN, TX 77843 USA
[2] OREGON STATE UNIV, DEPT BOT & PLANT PATHOL, CORVALLIS, OR 97331 USA
关键词
D O I
10.1128/JVI.70.7.4370-4379.1996
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The roles of the capsid protein (CP) and the CP coding sequence of tobacco etch potyvirus (TEV) in genome amplification were analyzed. A series of frameshift-stop codon mutations that interrupted translation of the CP coding sequence at various positions were introduced into the TEV genome. A series of 3' deletion mutants that lacked the CP coding sequence beyond each of the frameshift-stop codon mutations, were also produced. In addition, a series of 5' CP deletion mutants were generated. Amplification of genomes containing either frameshift-stop codon insertions after codons 1, 59, 103, and 138 or genomes containing the corresponding 3' deletions of the CP coding sequence was reduced by 100- to 1,000-fold relative to that of the parental genome in inoculated protoplasts. In contrast, a mutant containing a frameshift-stop codon after CP position 189 was amplified to 27% of the level of the parental virus, but the corresponding 3' deletion mutant lacking codons 190 to 261 was nonviable. Deletion mutants lacking CP codons 2 to 100, 2 to 150, 2 to 189, and 2 to 210 were amplified relatively efficient in protoplasts, but a deletion mutant lacking codons 2 to 230 was nonviable. None of the amplification-defective frameshift-stop codon or deletion mutants was rescued in transgenic cells expressing TEV CP, although the transgenic CP was able to rescue intercellular movement defects of replication-competent CP mutants. Coupled with previous results, these data led to the conclusions that (i) TEV genome amplification requires translation to a position between CP codons 138 and 189 but does not require the CP product and (ii) the TEV CP coding sequence contains a cis-active RNA element between codons 211 and 246. The implications of these findings on mechanisms of RNA replication and genome evolution are discussed.
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页码:4370 / 4379
页数:10
相关论文
共 46 条
[1]   THE NUCLEOTIDE-SEQUENCE OF THE CODING REGION OF TOBACCO ETCH VIRUS GENOMIC RNA - EVIDENCE FOR THE SYNTHESIS OF A SINGLE POLYPROTEIN [J].
ALLISON, R ;
JOHNSTON, RE ;
DOUGHERTY, WG .
VIROLOGY, 1986, 154 (01) :9-20
[2]   BIOCHEMICAL-ANALYSIS OF THE CAPSID PROTEIN GENE AND CAPSID PROTEIN OF TOBACCO ETCH VIRUS - N-TERMINAL AMINO-ACIDS ARE LOCATED ON THE VIRIONS SURFACE [J].
ALLISON, RF ;
DOUGHERTY, WG ;
PARKS, TD ;
WILLIS, L ;
JOHNSTON, RE ;
KELLY, M ;
ARMSTRONG, FB .
VIROLOGY, 1985, 147 (02) :309-316
[3]   A POINT MUTATION IN THE COAT PROTEIN ABOLISHES APHID TRANSMISSIBILITY OF A POTYVIRUS [J].
ATREYA, CD ;
RACCAH, B ;
PIRONE, TP .
VIROLOGY, 1990, 178 (01) :161-165
[4]   SITE-DIRECTED MUTATIONS IN THE POTYVIRUS HC-PRO GENE AFFECT HELPER COMPONENT ACTIVITY, VIRUS ACCUMULATION, AND SYMPTOM EXPRESSION IN INFECTED TOBACCO PLANTS [J].
ATREYA, CD ;
ATREYA, PL ;
THORNBURY, DW ;
PIRONE, TP .
VIROLOGY, 1992, 191 (01) :106-111
[5]   MUTATIONAL ANALYSIS OF THE COAT PROTEIN N-TERMINAL AMINO-ACIDS INVOLVED IN POTYVIRUS TRANSMISSION BY APHIDS [J].
ATREYA, PL ;
LOPEZMOYA, JJ ;
CHU, MH ;
ATREYA, CD ;
PIRONE, TP .
JOURNAL OF GENERAL VIROLOGY, 1995, 76 :265-270
[6]   AMINO-ACID SUBSTITUTIONS IN THE COAT PROTEIN RESULT IN LOSS OF INSECT TRANSMISSIBILITY OF A PLANT-VIRUS [J].
ATREYA, PL ;
ATREYA, CD ;
PIRONE, TP .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1991, 88 (17) :7887-7891
[7]   CIS-ACTING REQUIREMENTS FOR THE REPLICATION OF FLOCK HOUSE VIRUS-RNA 2 [J].
BALL, LA ;
LI, Y .
JOURNAL OF VIROLOGY, 1993, 67 (06) :3544-3551
[8]   MECHANISM OF TRANSLATIONAL COUPLING BETWEEN COAT PROTEIN AND REPLICASE GENES OF RNA BACTERIOPHAGE-MS2 [J].
BERKHOUT, B ;
VANDUIN, J .
NUCLEIC ACIDS RESEARCH, 1985, 13 (19) :6955-6967
[9]   LYSIS GENE OF BACTERIOPHAGE-MS2 IS ACTIVATED BY TRANSLATION TERMINATION AT THE OVERLAPPING COAT GENE [J].
BERKHOUT, B ;
SCHMIDT, BF ;
VANSTRIEN, A ;
VANBOOM, J ;
VANWESTRENEN, J ;
VANDUIN, J .
JOURNAL OF MOLECULAR BIOLOGY, 1987, 195 (03) :517-524
[10]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3