Structural similarities between the RNAs of two satellites of tobacco necrosis virus.
暂无分享,去创建一个
[1] B. Kassanis. Properties and behaviour of a virus depending for its multiplication on another. , 1962, Journal of general microbiology.
[2] S. Colowick,et al. Methods in Enzymology , Vol , 1966 .
[3] B. Kassanis,et al. Serological relationship of strains of tobacco necrosis virus and their ability to activate strains of satellite virus. , 1970, The Journal of general virology.
[4] B. Kassanis,et al. The amino acid composition, antigenicity, and other characteristics of the satellite viruses of tobacco necrosis virus. , 1970, Virology.
[5] H. Fraenkel-conrat,et al. Terminal heterogeneity at both ends of the satellite tobacco necrosis virus ribonucleic acid. , 1971, Biochemistry.
[6] L. Philipson,et al. Binding of histidine to tobacco mosaic virus RNA. , 1972, Biochemical and biophysical research communications.
[7] A. E. Sippel. Purification and characterization of adenosine triphosphate: ribonucleic acid adenyltransferase from Escherichia coli. , 1973, European journal of biochemistry.
[8] W. Gilbert,et al. A new method for sequencing DNA. , 1977, Proceedings of the National Academy of Sciences of the United States of America.
[9] F. Sanger,et al. DNA sequencing with chain-terminating inhibitors. , 1977, Proceedings of the National Academy of Sciences of the United States of America.
[10] D. Herson,et al. Competitive mRNA translation in an in vitro system from wheat germ. , 1979, The Journal of biological chemistry.
[11] J. Dodds,et al. Isolation and analysis of double-stranded RNA from virus-infected plant and fungal tissue. , 1979 .
[12] D. Mossop,et al. The stability of satellite viral RNAs in vivo and in vitro. , 1979, Virology.
[13] D. Sherratt,et al. Trans-complementable copy-number mutants of plasmid ColE1 , 1980, Nature.
[14] S. Cohen,et al. Analysis of gene control signals by DNA fusion and cloning in Escherichia coli. , 1980, Journal of molecular biology.
[15] W. Fiers,et al. Total nucleotide sequence of a nearly full-size DNA copy of satellite tobacco necrosis virus RNA. , 1980, Journal of molecular biology.
[16] P. Ahlquist,et al. Near identity of 3′ RNA secondary structure in bromoviruses and cucumber mosaic virus , 1981, Cell.
[17] M. Pinck,et al. Binding of ribosomes to the 5' leader sequence (N = 258) of RNA 3 from alfalfa mosaic virus. , 1981, Nucleic acids research.
[18] T. A. Jones,et al. Structure of satellite tobacco necrosis virus at 3.0 A resolution. , 1982, Journal of molecular biology.
[19] J. H. Strauss,et al. The 3'-non-coding regions of alphavirus RNAs contain repeating sequences. , 1982, Journal of molecular biology.
[20] P. Ahlquist,et al. Nucleotide sequence of the brome mosaic virus genome and its implications for viral replication. , 1984, Journal of molecular biology.
[21] J. Carrington,et al. Nucleotide sequence and genome organization of carnation mottle virus RNA. , 1985, Nucleic acids research.
[22] R. A. Thomas,et al. The nucleotide sequence of tobacco rattle virus RNA-2 (CAM strain). , 1985, Nucleic acids research.
[23] A. Shatkin. mRNA cap binding proteins: essential factors for initiating translation , 1985, Cell.
[24] C. Collmer,et al. Nucleotide sequence of the satellite of peanut stunt virus reveals structural homologies with viroids and certain nuclear and mitochondrial introns. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[25] R. Gingery,et al. A satellitelike virus particle associated with maize white line mosaic virus , 1985 .
[26] C. Collmer,et al. In vitro translation of cucumoviral satellites. I. Purification and nucleotide sequence of cucumber mosaic virus-associated RNA 5 from cucumber mosaic virus strain S. , 1986, Virology.
[27] D. Baulcombe,et al. The complete nucleotide sequence of tobacco rattle virus RNA-1. , 1987, The Journal of general virology.
[28] W. Fiers,et al. Expression in plants of the cloned satellite tobacco necrosis virus genome and of derived insertion mutants. , 1987, Virology.
[29] C. Masuta,et al. Analysis of the genome of satellite panicum mosaic virus. , 1987, Virology.
[30] R. Zell,et al. DNA mismatch‐repair in Escherichia coli counteracting the hydrolytic deamination of 5‐methyl‐cytosine residues. , 1987, The EMBO journal.
[31] W. Allen Miller,et al. Sequence and organization of barley yellow dwarf virus genomic RNA. , 1988, Nucleic Acids Res..
[32] P. Turner,et al. Mutational analysis of the tobacco mosaic virus 5'-leader for altered ability to enhance translation. , 1988, Nucleic acids research.
[33] R. Nutter,et al. The complete nucleotide sequence of the maize chlorotic mottle virus genome. , 1989, Nucleic acids research.
[34] S. Lommel,et al. The complete nucleotide sequence and genome organization of red clover necrotic mosaic virus RNA-1. , 1989, Virology.
[35] J. Dodds,et al. Nucleotide sequence and translation of satellite tobacco mosaic virus RNA. , 1989, Virology.
[36] T. J. Morris,et al. Organization of tomato bushy stunt virus genome: characterization of the coat protein gene and the 3' terminus. , 1989, Virology.
[37] J. Carrington,et al. The genome structure of turnip crinkle virus. , 1989, Virology.
[38] S. MacFarlane,et al. Pea early browning virus RNA1 encodes four polypeptides including a putative zinc-finger protein. , 1989, Nucleic acids research.
[39] N. Pace,et al. Phylogenetic comparative analysis of RNA secondary structure. , 1989, Methods in enzymology.
[40] J. Carrington,et al. Cap-independent enhancement of translation by a plant potyvirus 5' nontranslated region , 1990, Journal of virology.
[41] Paul Ameloot. Funktionele analyse van het tabaksnekrose-satellietvirus genoom , 1990 .
[42] J. Seurinck,et al. Genome structure of tobacco necrosis virus strain A. , 1990, Virology.
[43] The absence of a m7G cap on beta-globin mRNA and alfalfa mosaic virus RNA 4 increases the amounts of initiation factor 4F required for translation. , 1990, The Journal of biological chemistry.
[44] G. Brawerman. Mechanisms of mRNA decay. , 1990, Trends in biotechnology.
[45] Y. Okada,et al. Mutational analysis of the pseudoknot region in the 3' noncoding region of tobacco mosaic virus RNA , 1990, Journal of virology.
[46] R. Jackson,et al. Do the poly(A) tail and 3′ untranslated region control mRNA translation? , 1990, Cell.
[47] V. Walbot,et al. RNA pseudoknot domain of tobacco mosaic virus can functionally substitute for a poly(A) tail in plant and animal cells. , 1990, Genes & development.
[48] J. Abrahams,et al. Prediction of RNA secondary structure, including pseudoknotting, by computer simulation. , 1990, Nucleic acids research.
[49] X. Danthinne,et al. Studies on the translational properties of STNV RNA non-coding regions. , 1990 .
[50] E. ter Haar,et al. Cowpea mosaic virus middle component RNA contains a sequence that allows internal binding of ribosomes and that requires eukaryotic initiation factor 4F for optimal translation , 1991, Journal of virology.
[51] N. Sonenberg. Picornavirus RNA translation continues to surprise. , 1991, Trends in genetics : TIG.