Ribosomal translocation: facts and models.
暂无分享,去创建一个
[1] Y. Ivanov,et al. 70-S ribosomes of Escherichia coli have an additional site for deacylated tRNA binding. , 2005, European journal of biochemistry.
[2] D. Riesner,et al. Binding of tRNA in different functional states to Escherichia coli ribosomes as measured by velocity sedimentation. , 2005, European journal of biochemistry.
[3] H. Noller,et al. Identification of a site on 23S ribosomal RNA located at the peptidyl transferase center. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[4] D. Engelman,et al. Positions of proteins S14, S18 and S20 in the 30 S ribosomal subunit of Escherichia coli. , 1984, Journal of molecular biology.
[5] A. Spirin. Testing the classical two‐tRNA‐site model for the ribosomal elongation cycle , 1984, FEBS letters.
[6] J. Ofengand,et al. Covalent crosslinking of Escherichia coli phenylalanyl-tRNA and valyl-tRNA to the ribosomal A site via photoaffinity probes attached to the 4-thiouridine residue. , 1984, Journal of molecular biology.
[7] J. Ofengand,et al. Immunoelectron microscopic localization of the S19 site on the 30 S ribosomal subunit which is crosslinked to A site bound transfer RNA. , 1984, Journal of molecular biology.
[8] O. M. Selivanova,et al. Structure of the Escherichia coli 50 S ribosomal subunit. , 1983, Journal of molecular biology.
[9] G. Stöffler,et al. Location of eight ribosomal proteins on the surface of the 50S subunit from Escherichia coli. , 1983, Proceedings of the National Academy of Sciences of the United States of America.
[10] B. Epe,et al. Immunoelectron microscopy of ribosomes carrying a fluorescence label in a defined position , 1983, FEBS letters.
[11] H. Rheinberger,et al. Testing an alternative model for the ribosomal peptide elongation cycle. , 1983, Proceedings of the National Academy of Sciences of the United States of America.
[12] E. Makarov,et al. Quantitative study of interaction of deacylated tRNA with Escherichia coli ribosomes , 1983, FEBS letters.
[13] A. Spirin. Location of tRNA on the ribosome , 1983, FEBS letters.
[14] W. Wintermeyer,et al. Topological arrangement of two transfer RNAs on the ribosome. Fluorescence energy transfer measurements between A and P site-bound tRNAphe. , 1983, Journal of molecular biology.
[15] J. Ofengand,et al. Formation and properties of a covalent complex between elongation factor Tu and Phe-tRNA bearing a photoaffinity probe on its 3-(3-amino-3-carboxypropyl)uridine residue. , 1983, Journal of molecular biology.
[16] A. Spirin,et al. Structural study of translating 70 S ribosomes from Escherichia coli , 1983, FEBS letters.
[17] A. Spirin,et al. Bioenergetics and protein synthesis. , 1982, Biochimica et biophysica acta.
[18] S. Kirillov,et al. Non‐exclusion principle of Ac‐Phe‐tRNAPhe interaction with the donor and acceptor sites of Escherichia coli ribosomes , 1982, FEBS letters.
[19] J. Lake. Ribosomal subunit orientations determined in the monomeric ribosome by single and by double-labeling immune electron microscopy. , 1982, Journal of molecular biology.
[20] S. Sköld. Chemical cross-linking of elongation factor G to both subunits of the 70-S ribosomes from Escherichia coli. , 1982, European journal of biochemistry.
[21] B. Clark,et al. The site of interaction of aminoacyl‐tRNA with elongation factor Tu. , 1982, The EMBO journal.
[22] J. Ofengand,et al. Covalent crosslinking of tRNA1Val to 16S RNA at the ribosomal P site: identification of crosslinked residues. , 1982, Proceedings of the National Academy of Sciences of the United States of America.
[23] E. Makarov,et al. Quantitative study of kanamycin action on different functions of Escherichia coli ribosomes , 1982, FEBS letters.
[24] E. Makarov,et al. Kinetic aspects of tetracycline action on the acceptor (A) site of Escherichia coli ribosomes , 1982, FEBS letters.
[25] C. Cantor,et al. Distance moved by transfer RNA during translocation from the A site to the P site on the ribosome. , 1982, Journal of molecular biology.
[26] A. Gudkov,et al. Proton nuclear magnetic resonance study of the ribosomal protein L7/L12 in situ , 1982, FEBS letters.
[27] R. Gutell,et al. Secondary structure model for 23S ribosomal RNA. , 1981, Nucleic acids research.
[28] D. Riesner,et al. Steps of mRNA translocation in protein biosynthesis , 1981, Nature.
[29] R. Brimacombe,et al. The use of 2-iminothiolane as an RNA-protein cross-linking agent in Escherichia coli ribosomes, and the localisation on 23S RNA of sites cross-linked to proteins L4, L6, L21, L23, L27 and L29. , 1981, Nucleic acids research.
[30] H. Rheinberger,et al. Three tRNA binding sites on Escherichia coli ribosomes. , 1981, Proceedings of the National Academy of Sciences of the United States of America.
[31] A. Spirin,et al. Template‐free ribosomal synthesis of polylysine from lysyl‐tRNA , 1981, FEBS letters.
[32] Y. Ovchinnikov,et al. Localization of the elongation factor g on escherichia coli ribosome , 1981, FEBS letters.
[33] J. Lake,et al. Ribosomal proteins S3, S6, S8 and S10 of Escherichia coli localized on the external surface of the small subunit by immune electron microscopy. , 1981, Journal of molecular biology.
[34] E. Makarov,et al. Mechanism of codon—anticodon interaction in ribosomes , 1980, FEBS letters.
[35] A. Barta,et al. Mechanism of translocation: relative arrangement of tRNA and mRNA on the ribosome. , 1980, Proceedings of the National Academy of Sciences of the United States of America.
[36] Y. Ivanov,et al. Quantitative study of the interaction of formylmethionyl-tRNAfMet with ribosomes of Escherichia coli. , 1980, European journal of biochemistry.
[37] H. Gassen,et al. mRNA translocation in protein biosynthesis: association constants related to the translocation process , 1980, FEBS letters.
[38] M. Yarus,et al. Transfer RNA selection at the ribosomal A and P sites. , 1979, Journal of molecular biology.
[39] A. Bogdanov,et al. Localization of the 3' end of Escherichia coli 16 S RNA by electron microscopy of antibody-labelled subunits. , 1979, Journal of molecular biology.
[40] J. Modolell,et al. The binding of non-cognate Tyr-tRNATyr to poly(uridylic acid)-programmed Escherichia coli ribosomes. , 1979, European journal of biochemistry.
[41] C. Cantor,et al. Fluorescence studies of the binding of a yeast tRNAPhe derivative to Escherichia coli ribosomes. , 1979, Journal of molecular biology.
[42] C. Cantor,et al. The distance between the anticodon loops of two tRNAs bound to the 70 S Escherichia coli ribosome. , 1979, Journal of molecular biology.
[43] R. Lührmann,et al. Codon–anticodon interaction at the ribosomal peptidyl-site , 1979, Nature.
[44] D. Glitz,et al. Ribosome structure: localization of 3' end of RNA in small subunit by immunoelectronmicroscopy. , 1979, Proceedings of the National Academy of Sciences of the United States of America.
[45] K. Nierhaus,et al. Codon-anticodon interaction at the ribosomal P (peptidyl-tRNA)site. , 1979, Proceedings of the National Academy of Sciences of the United States of America.
[46] J. Lake,et al. Ribosome structure: hand determination by electron microscopy of 30 S subunits. , 1979, Journal of molecular biology.
[47] J. Ofengand,et al. Localization of the decoding region on the 30S Escherichia coli ribosomal subunit by affinity immunoelectron microscopy. , 1979, Proceedings of the National Academy of Sciences of the United States of America.
[48] A. Spirin,et al. Ribosomal translocation assayed by the matrix-bound poly(uridylic acid) column technique. , 1979, European journal of biochemistry.
[49] S. Kirillov,et al. Interaction of N-acetyl-phenylalanyl-tRNAPhe with 70S ribosomes of Escherichia coli. , 1978, Nucleic acids research.
[50] Y. Semenkov,et al. The mechanism of codon-anticodon interaction in ribosomes. Heterogeneity of tRNA complexes with 70-S ribosomes of Escherichia coli. , 1978, European journal of biochemistry.
[51] M. Boulik,et al. Comparison of Artemia salina and Escherichia coli ribosome structure by electron microscopy. , 1978, Proceedings of the National Academy of Sciences of the United States of America.
[52] J. Modolell,et al. Dual interference of hygromycin B with ribosomal translocation and with aminoacyl-tRNA recognition. , 1978, European journal of biochemistry.
[53] J. Modolell,et al. The inhibition of ribosomal translocation by viomycin. , 1977, European journal of biochemistry.
[54] D. Glitz,et al. Ribosome structure: localization of N6,N6-dimethyladenosine by electron microscopy of a ribosome-antibody complex. , 1977, Proceedings of the National Academy of Sciences of the United States of America.
[55] A. Spirin,et al. Stepwise elongation factor G-promoted elongation of polypeptides on the ribosome without GTP cleavage. , 1976, Journal of molecular biology.
[56] J. Modolell,et al. Polypeptide-chain elongation promoted by guanyl-5'-yl imidodiphosphate. , 1976, European journal of biochemistry.
[57] J A Lake,et al. Ribosome structure determined by electron microscopy of Escherichia coli small subunits, large subunits and monomeric ribosomes. , 1976, Journal of molecular biology.
[58] A. Spirin,et al. Factor-free ("non-enzymic") and factor-dependent systems of translation of polyuridylic acid by Escherichia coli ribosomes. , 1976, Journal of molecular biology.
[59] J. Modolell,et al. Ribosomal translocation promoted by guanylylimido diphosphate and guanylyl‐methylene diphosphonate , 1975, FEBS letters.
[60] A. Spirin,et al. [Relation of working cycle stages of factorless ("nonenzymatic") translation to magnesium concentration]. , 1975, Doklady Akademii nauk SSSR.
[61] A. Spirin,et al. Translocation in ribosomes by attachment—detachment of elongation factor G without GTP cleavage: Evidence from a column‐bound ribosome system , 1975, FEBS letters.
[62] J. Modolell,et al. The interaction of elongation factor G with N-acetylphenylalanyl transfer RNA-ribosome complexes. , 1973, Proceedings of the National Academy of Sciences of the United States of America.
[63] A. Spirin,et al. On some artifacts of sucrose gradient sedimentation of ribosomes , 1972, FEBS letters.
[64] A. Spirin,et al. A modification of the 30 S ribosomal subparticle is responsible for stimulation of “non‐enzymatic” translocation byp‐chloromercuribenzoate , 1972, FEBS letters.
[65] N. de Groot,et al. The binding of purified Phe-tRNA and peptidyl-tRNA Phe to Escherichia coli ribosomes. , 1971, European journal of biochemistry.
[66] A. Spirin,et al. Stimulation of "non-enzymic" translocation in ribosomes by p-chloromercuribenzoate. , 1971, FEBS letters.
[67] M. Krauss,et al. Dissociation of ribosomes induced by centrifugation: evidence for doubting conformational changes in ribosomes. , 1971, Biochimica et biophysica acta.
[68] R. Thach,et al. Translocation of messenger RNA and "accommodation" of fMet-tRNA. , 1971, Proceedings of the National Academy of Sciences of the United States of America.
[69] R. Baierlein,et al. Pressure-induced dissociation of sedimenting ribosomes: effect on sedimentation patterns. , 1971, Proceedings of the National Academy of Sciences of the United States of America.
[70] D. Chuang,et al. A translocation-associated ribosomal conformational change detected by hydrogen exchange and sedimentation velocity. , 1971, Proceedings of the National Academy of Sciences of the United States of America.
[71] A. Spirin. On the equilibrium of the association—dissociation reaction of ribosomal subparticles and on the existance of the so‐called ‘60 S intermediate’ (‘swollen 70 S’) during centrifugation of the equilibrium mixture , 1971, FEBS letters.
[72] M. Schreier,et al. Conformational changes in ribosomes during protein synthesis. , 1971, Proceedings of the National Academy of Sciences of the United States of America.
[73] P. Leder,et al. Characterization of the initial peptide of Q-beta RNA polymerase and control of its synthesis. , 1971, Proceedings of the National Academy of Sciences of the United States of America.
[74] P. Leder,et al. Translation of Phage Qβ mRNA: A Test of the Two-site Model for Ribosomal Function , 1970, Nature.
[75] N. de Groot,et al. Reaction of puromycin with chemically prepared peptidyl transfer RNA. , 1970, European journal of biochemistry.
[76] J. Bodley,et al. Interaction of E. coli G Factor with the 50S Ribosomal Subunit , 1970, Nature.
[77] A. Kaji,et al. Relationship between sites 1,2 and acceptor, donor sites for the binding of aminoacyl tRNA to ribosomes. , 1970, European journal of biochemistry.
[78] F. Lipmann. Polypeptide chain elongation in protein biosynthesis. , 1969, Science.
[79] A. Haenni,et al. Release of transfer RNA during peptide chain elongation. , 1969, Proceedings of the National Academy of Sciences of the United States of America.
[80] P. Leder,et al. Translocation of mRNA codons. II. Properties of an anti-translocase antibody. , 1969, Proceedings of the National Academy of Sciences of the United States of America.
[81] P. Leder,et al. Translation and translocation of defined RNA messengers. , 1969, Journal of molecular biology.
[82] A. Haenni,et al. Stepwise synthesis of a tripeptide. , 1968, Proceedings of the National Academy of Sciences of the United States of America.
[83] S. Pestka. Studies on the formation of trensfer ribonucleic acid-ribosome complexes. V. On the function of a soluble transfer factor in protein synthesis. , 1968, Proceedings of the National Academy of Sciences of the United States of America.
[84] M. Bretscher. Translocation in Protein Synthesis: A Hybrid Structure Model , 1968, Nature.
[85] Spirin As. [On the mechanism of ribosome function. The hypothesis of locking-unlocking of subparticles]. , 1968 .
[86] J. Gordon,et al. Role of divalent ions in poly U-directed phenylalanine polymerization* , 1967 .
[87] I. Rychlík. Release of lysine peptides by puromycin from polylysyl-transfer ribonucleic acid in the presence of ribosomes. , 1966, Biochimica et biophysica acta.
[88] F. Lipmann,et al. CHARACTERIZATION OF A RIBOSOME-LINKED GUANOSINE TRIPHOSPHATASE IN ESCHERICHIA COLI EXTRACTS. , 1964, Proceedings of the National Academy of Sciences of the United States of America.
[89] W. Gilbert,et al. THE BINDING OF S-RNA BY ESCHERICHIA COLI RIBOSOMES. , 1963, Journal of molecular biology.
[90] G. Kramer,et al. Structure, Function, and Genetics of Ribosomes , 1986, Springer Series in Molecular Biology.
[91] Lim Vi,et al. [Stereochemistry of the transpeptidation reaction in the ribosome. The ribosome generates an alpha-helix in the synthesis of the protein polypeptide chain]. , 1985 .
[92] G. Stöffler,et al. Immunoelectron microscopy of ribosomes. , 1984, Annual review of biophysics and bioengineering.
[93] Spirin As,et al. Changes in ribosome compactness during translocation , 1984 .
[94] H. Tschesche. Modern methods in protein chemistry , 1983 .
[95] A. Spirin,et al. Template-free ribosomal synthesis of polypeptides from aminoacyl-tRNAs. , 1982, Bio Systems.
[96] Spirin As,et al. [Template-free polypeptide synthesis from aminoacyl-tRNA in Escherichia coli ribosomes]. , 1982 .
[97] H. Weissbach,et al. Molecular approaches to gene expression and protein structure , 1981 .
[98] A. Spirin,et al. Elongation factor G-promoted translocation and polypeptide elongation in ribosomes without GTP cleavage: use of columns with matrix-bound polyuridylic acid. , 1979, Methods in enzymology.
[99] S. Pestka,et al. Molecular mechanisms of protein biosynthesis , 1977 .
[100] S. Weinhouse,et al. NUCLEIC ACID-PROTEIN RECOGNITION , 1977 .
[101] M. Sundaralingam,et al. Structure and conformation of nucleic acids and protein-nucleic acid interactions , 1975 .
[102] A. Spirin,et al. [Effect of different physical and chemical factors on the specific (codon-dependent) binding of amino acyl T RNA with isolated 30S ribosomal subparticles]. , 1974, Doklady Akademii nauk SSSR.
[103] P. Leder. The elongation reactions in protein synthesis. , 1973, Advances in protein chemistry.
[104] Ernest Frederick Gale,et al. The Molecular basis of antibiotic action , 1972 .
[105] I. Rychlík. Properties of the ternary complex between polylysyl transfer ribonucleic acid, ribosome and polyadenylic acid. I. Messenger-dependent attachment of polylysyl transfer ribonucleic acid by Escherichia coli ribosomes , 1966 .
[106] F. Wettstein,et al. BINDING OF TRANSFER RIBONUCLEIC ACID TO RIBOSOMES ENGAGED IN PROTEIN SYNTHESIS: NUMBER AND PROPERTIES OF RIBOSOMAL BINDING SITES. , 1965, Journal of molecular biology.