Attachment of nascent RNA molecules to superhelical DNA.

[1]  J. Krakow,et al.  Studies on the product binding sites of the Azotobacter vinelandii ribonucleic acid polymerase. , 1975, The Journal of biological chemistry.

[2]  T. Hsieh,et al.  Thermodynamic properties of superhelical DNAs. , 1975, Biochemistry.

[3]  J. Richardson Initiation of transcription by Escherichia coli RNA polymerase from supercoiled and non-supercoiled bacteriophage PM2 DNA. , 1975, Journal of molecular biology.

[4]  J. Champoux,et al.  Priming of superhelical SV40 DNA by Escherichia coli RNA polymerase for in vitro DNA synthesis. , 1975, Biochemistry.

[5]  J. Wang The degree of unwinding of the DNA helix by ethidium. I. Titration of twisted PM2 DNA molecules in alkaline cesium chloride density gradients. , 1974, Journal of molecular biology.

[6]  J. Wang,et al.  Interactions between twisted DNAs and enzymes: the effects of superhelical turns. , 1974, Journal of molecular biology.

[7]  H. Echols,et al.  Effect of Circularity and Superhelicity on Transcription from Bacteriophage λ DNA , 1973 .

[8]  J. Richardson Mechanism of ethidium bromide inhibition of RNA polymerase. , 1973, Journal of molecular biology.

[9]  V. Vogt Purification and further properties of single-strand-specific nuclease from Aspergillus oryzae. , 1973, European journal of biochemistry.

[10]  N. Davidson Effect of DNA length on the free energy of binding of an unwinding ligand to a supercoiled DNA. , 1972, Journal of molecular biology.

[11]  J. Champoux,et al.  An activity from mammalian cells that untwists superhelical DNA--a possible swivel for DNA replication (polyoma-ethidium bromide-mouse-embryo cells-dye binding assay). , 1972, Proceedings of the National Academy of Sciences of the United States of America.

[12]  J. Richardson Rates of bacteriophage T4 RNA chain growth in vitro. , 1970, Journal of molecular biology.

[13]  R. Franklin,et al.  Structure and synthesis of a lipid-containing bacteriophage. I. Growth of bacteriophage PM2 and alterations in nucleic acid metabolism in the infected cell. , 1969, Virology.

[14]  W. Bauer,et al.  The interaction of closed circular DNA with intercalative dyes. I. The superhelix density of SV40 DNA in the presence and absence of dye. , 1970, Journal of molecular biology.

[15]  H. Boedtker Dependence of the sedimentation coefficient on molecular weight of RNA after reaction with formaldehyde. , 1968, Journal of molecular biology.

[16]  V. Potter,et al.  Nuclei from Rat Liver: Isolation Method That Combines Purity with High Yield , 1966, Science.

[17]  J. Richardson Enzymic synthesis of RNA from T7 DNA. , 1966, Journal of molecular biology.

[18]  M. Hayashi A DNA-RNA complex as an intermediate of in vitro genetic transcription. , 1965, Proceedings of the National Academy of Sciences of the United States of America.

[19]  H. Bremer,et al.  A COMPLEX OF ENZYMATICALLY SYNTHESIZED RNA AND TEMPLATE DNA. , 1964, Proceedings of the National Academy of Sciences of the United States of America.

[20]  M. Chamberlin,et al.  MECHANISM OF RNA POLYMERASE ACTION: FORMATION OF DNA-RNA HYBRIDS WITH SINGLE-STRANDED TEMPLATES. , 1964, Journal of molecular biology.

[21]  Weiss Sb,et al.  The secondary structure of complementary RNA. , 1962 .

[22]  S. Spiegelman,et al.  The selective synthesis of informational RNA in bacteria. , 1961, Proceedings of the National Academy of Sciences of the United States of America.

[23]  C. Kurland Molecular characterization of ribonucleic acid from Escherichia coli ribosomes , 1960 .