6 – SITE-DIRECTED MUTAGENESIS AS A TOOL IN GENETICS
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[1] T. Taniguchi,et al. Site-directed mutations in the initiator region of the bacteriophage Qβ coat cistron and their effect on ribosome binding☆ , 1978 .
[2] E. Domingo,et al. A guanosine to adenosine transition in the 3' terminal extracistronic region of bacteriophage Q beta RNA leading to loss of infectivity. , 1977, Journal of molecular biology.
[3] J. Steitz,et al. Site-specific interaction of Qbeta host factor and ribosomal protein S1 with Qbeta and R17 bacteriophage RNAs. , 1976, The Journal of biological chemistry.
[4] E. Domingo,et al. In vitro site-directed mutagenesis: Generation and properties of an infectious extracistronic mutant of bacteriophage Qβ , 1976 .
[5] E. Batschelet,et al. The proportion of revertant and mutant phage in a growing population, as a function of mutation and growth rate. , 1976, Gene.
[6] R. Flavell,et al. Site-directed mutagenesis: effect of an extracistronic mutation on the in vitro propagation of bacteriophage Qbeta RNA. , 1975, Proceedings of the National Academy of Sciences of the United States of America.
[7] W. Szer,et al. Replacement of ribosomal protein S1 by interference factor ialpha in ribosomal binding of phage Ms2 RNA. , 1974, Proceedings of the National Academy of Sciences of the United States of America.
[8] R. Flavell,et al. Site-directed mutagenesis: Generation of an extracistronic mutation in bacteriophage Qβ RNA , 1974 .
[9] H. Inouye,et al. Physical and functional homology between ribosomal protein S1 and interference factor i. , 1974, European journal of biochemistry.
[10] K. Weber,et al. Subunit I of G beta replicase and 30 S ribosomal protein S1 of Escherichia coli. Evidence for the identity of the two proteins. , 1974, The Journal of biological chemistry.
[11] C. Weissmann,et al. The making of a phage , 1974, FEBS letters.
[12] M. Billeter,et al. Structure and function of phage RNA. , 1973, Annual review of biochemistry.
[13] M. Billeter,et al. Resynchronization of RNA synthesis by coliphage Qbeta replicase at an internal site of the RNA template. , 1973, Journal of molecular biology.
[14] M. Billeter,et al. Molecular basis for repressor activity of Q replicase. , 1972, Nature: New biology.
[15] W. Fiers,et al. Nucleotide Sequence of the Gene Coding for the Bacteriophage MS2 Coat Protein , 1972, Nature.
[16] W. S. Hayward,et al. Bacterial proteins required for replication of phage Q ribonucleic acid. Pruification and properties of host factor I, a ribonucleic acid-binding protein. , 1972, The Journal of biological chemistry.
[17] R. Kamen. Characterization of the Subunits of Qβ Replicase , 1970, Nature.
[18] C. Weissmann,et al. Subunit Structure of Qβ Replicase , 1970, Nature.
[19] C. Weissmann,et al. The 3′-termini of bacteriophage Qβ plus and minus strands , 1970 .
[20] J. Hindley,et al. Sequence of a Ribosome Binding Site in Bacteriophage Qβ-RNA , 1969, Nature.
[21] J. Steitz. Polypeptide Chain Initiation: Nucleotide Sequences of the Three Ribosomal Binding Sites in Bacteriophage R17 RNA , 1969, Nature.
[22] J. August,et al. The 3′-Terminus and the Replication of Phage RNA , 1969, Nature.
[23] R. Kamen. Infectivity of Bacteriophage R17 RNA after Sequential Removal of 3′ Terminal Nucleotides , 1969, Nature.
[24] C. Weissmann,et al. Replication of viral RNA, XVI. Enzymatic synthesis of infectious virual RNA with noninfectious Q-beta minus strands as template. , 1968, Proceedings of the National Academy of Sciences of the United States of America.