Molecular mapping of influenza virus RNA polymerase by site-specific antibodies

被引:17
作者
Masunaga, K
Mizumoto, K
Kato, H
Ishihama, A
Toyoda, T
机构
[1] Kurume Univ, Sch Med, Dept Virol, Kurume, Fukuoka 8300011, Japan
[2] Kurume Univ, Sch Med, Dept Pediat, Kurume, Fukuoka 8300011, Japan
[3] Kitasato Univ, Sch Pharmaceut Sci, Dept Biochem, Tokyo 1088641, Japan
[4] Natl Inst Genet, Dept Mol Genet, Mishima, Shizuoka 4118540, Japan
关键词
influenza virus; RNA polymerase; antibody; transcription;
D O I
10.1006/viro.1999.9625
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Influenza virus RNA polymerase with the subunit structure PB1-PB2-PA is involved in both transcription and replication of the RNA genome, including the unique cap-I-dependent RNase activity. To map the important domains for RNA polymerization, cap-I-dependent RNase, and cap-I-binding activity, we generated site-specific antibodies against overlapping 150-amino-acid peptides that cover each entire subunit. Monospecific antibodies against each subunit inhibited RNA synthesis in vitro. Those against PB1 and PB2 inhibited the cap-I-dependent RNase activity, but those against P82 alone slightly inhibited the cap-I-binding activity. Antibodies against the N-terminal amino acids 1-159 of PB2 that overlap the PB1-binding site on PB2 and the C-terminal amino acids 501-617 of PA that overlap the putative nucleotide-binding site and PB1-binding site on PA inhibited RNA polymerizing activity as well as monospecific antibodies. Those against the N-terminal (amino acids 1-159); the central region (amino acids 305-559) of PB2, where a part of the cap-binding domain predicted previously is localized; the N-terminal (amino acids 1-222) of PBI; and amino acids 301-517 and 601-716 of PA inhibited the cap-I-dependent RNase activity. The cap-binding domain on PB2 could be mapped in amino acids 402-559, where one of the cap-binding domains mapped previously overlapped. (C) 1999 Academic Press.
引用
收藏
页码:130 / 141
页数:12
相关论文
共 56 条
[1]   MESSENGER-RNA CAP-BINDING PROTEIN - CLONING OF THE GENE ENCODING PROTEIN-SYNTHESIS INITIATION FACTOR-EIF-4E FROM SACCHAROMYCES-CEREVISIAE [J].
ALTMANN, M ;
HANDSCHIN, C ;
TRACHSEL, H .
MOLECULAR AND CELLULAR BIOLOGY, 1987, 7 (03) :998-1003
[2]   PHOTOAFFINITY-LABELING OF INFLUENZA-VIRUS RNA-POLYMERASE PB1 SUBUNIT WITH 8-AZIDO GTP [J].
ASANO, Y ;
MIZUMOTO, K ;
MARUYAMA, T ;
ISHIHAMA, A .
JOURNAL OF BIOCHEMISTRY, 1995, 117 (03) :677-682
[3]  
Asano Y, 1997, J BIOCHEM-TOKYO, V122, P627
[4]  
BARCENA J, 1994, J VIROL, V68, P6900
[5]   Influenza virus polymerase basic protein 1 interacts with influenza virus polymerase basic protein 2 at multiple sites [J].
Biswas, SK ;
Nayak, DP .
JOURNAL OF VIROLOGY, 1996, 70 (10) :6716-6722
[6]   MUTATIONAL ANALYSIS OF THE CONSERVED MOTIFS OF INFLUENZA-A VIRUS POLYMERASE BASIC-PROTEIN 1 [J].
BISWAS, SK ;
NAYAK, DP .
JOURNAL OF VIROLOGY, 1994, 68 (03) :1819-1826
[7]   Inhibition of the influenza virus RNA-dependent RNA polymerase by antisera directed against the carboxy-terminal region of the PB2 subunit [J].
Blok, V ;
Cianci, C ;
Tibbles, KW ;
Inglis, SC ;
Krystal, M ;
Digard, P .
JOURNAL OF GENERAL VIROLOGY, 1996, 77 :1025-1033
[8]  
BRAAM J, 1983, CELL, V34, P609
[9]   MOLECULAR-CLONING AND SEQUENCING OF INFLUENZA-VIRUS A/VICTORIA/3/75 POLYMERASE GENES - SEQUENCE EVOLUTION AND PREDICTION OF POSSIBLE FUNCTIONAL DOMAINS [J].
DELALUNA, S ;
MARTINEZ, C ;
ORTIN, J .
VIRUS RESEARCH, 1989, 13 (02) :143-156
[10]   AN ATTEMPT TO UNIFY THE STRUCTURE OF POLYMERASES [J].
DELARUE, M ;
POCH, O ;
TORDO, N ;
MORAS, D ;
ARGOS, P .
PROTEIN ENGINEERING, 1990, 3 (06) :461-467