Molecular biology is one of the most rapidly growing develo-ping and at thesame time most exciting disciplines. The keyto molecular biology lies in the understanding of nucleic a-cids - their structure, function, and interaction with pro-teins. Nucleic Acids and Molecular Biology keeps scientistsinformed of the explosively growing information and complieswith with the great interest in this field by offering acontinued high standard of review. A substantial part ofthis volume has been devoted to the analysis of differentaspects of nucleic acid-protein-interactions including RNA-protein-interaction.…mehr
Molecular biology is one of the most rapidly growing develo-ping and at thesame time most exciting disciplines. The keyto molecular biology lies in the understanding of nucleic a-cids - their structure, function, and interaction with pro-teins. Nucleic Acids and Molecular Biology keeps scientistsinformed of the explosively growing information and complieswith with the great interest in this field by offering acontinued high standard of review. A substantial part ofthis volume has been devoted to the analysis of differentaspects of nucleic acid-protein-interactions including RNA-protein-interaction.
DNA, cis-Platinum and Intercalators: Catalytic Activity of the DNA Double Helix.- Indirect Effects of DNA Sequence on 434 Repressor-DNA Interactions.- E. coli Met Repressor: DNA Recognition by ?-Strands.- Mechanism of Action of Restriction Endonuclease EcoRV.- DNA Bending by Fos and Jun: Structural and Functional Implications.- Structure of the TFIIIA-DNA Complex.- Structure and Function of the Glucocorticoid Receptor DNA-Binding Domain.- Retinoid Receptors and Their Role in Cellular Proliferation and Differentiation.- Structural and Functional Aspects of the DNA Binding Protein FIS.- LexA, the Self-Cleaving Transcriptional Repressor of the SOS System.- Resolution of Holliday Junctions by the E. coli RuvC Protein.- Site-Specific Recombination and the Segregation of Circular Chromosomes.- Nucleosome Positioning.- The Role of the Nucleoskeleton in RNA Metabolism.- The Mechanism of Action of the Retinoblastoma Gene Product.- RNA Pseudoknots.- Selection of Functional RNA and DNA Molecules from Randomized Sequences.- Structure and Function of Ribonuclease HI from Escherichia coli.- RNA-Protein Interactions in Ribonucleoprotein Particles.- Hybrid States of tRNA During Translation.
DNA, cis-Platinum and Intercalators: Catalytic Activity of the DNA Double Helix.- Indirect Effects of DNA Sequence on 434 Repressor-DNA Interactions.- E. coli Met Repressor: DNA Recognition by ?-Strands.- Mechanism of Action of Restriction Endonuclease EcoRV.- DNA Bending by Fos and Jun: Structural and Functional Implications.- Structure of the TFIIIA-DNA Complex.- Structure and Function of the Glucocorticoid Receptor DNA-Binding Domain.- Retinoid Receptors and Their Role in Cellular Proliferation and Differentiation.- Structural and Functional Aspects of the DNA Binding Protein FIS.- LexA, the Self-Cleaving Transcriptional Repressor of the SOS System.- Resolution of Holliday Junctions by the E. coli RuvC Protein.- Site-Specific Recombination and the Segregation of Circular Chromosomes.- Nucleosome Positioning.- The Role of the Nucleoskeleton in RNA Metabolism.- The Mechanism of Action of the Retinoblastoma Gene Product.- RNA Pseudoknots.- Selection of Functional RNA and DNA Molecules from Randomized Sequences.- Structure and Function of Ribonuclease HI from Escherichia coli.- RNA-Protein Interactions in Ribonucleoprotein Particles.- Hybrid States of tRNA During Translation.
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