The ribosome is a macromolecular machine that synthesizes proteins with a high degree of speed and accuracy. Our present understanding of its structure, function and dynamics is the result of six decades of research. This book collects over 40 articles based on the talks presented at the 2010 Riboso
Structure, Function, and Genetics of Ribosomes
โ Scribed by H. G. Wittmann (auth.), Boyd Hardesty, Gisela Kramer (eds.)
- Publisher
- Springer-Verlag New York
- Year
- 1986
- Tongue
- English
- Leaves
- 831
- Series
- Springer Series in Molecular Biology
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
During the past few decades we have witnessed an era of remarkable growth in the field of molecular biology. In 1950 very little was known of the chemical constitution of biological systems, the manner in which information was transmitted from one organism to another, or the extent to which the chemical basis of life is unified. The picture today is dramatiยญ cally different. We have an almost bewildering variety of information deยญ tailing many different aspects of life at the molecular level. These great advances have brought with them some breath-taking insights into the molecular mechanisms used by nature for replicating, distributing, and modifying biological information. We have learned a great deal about the chemical and physical nature of the macromolecular nucleic acids and proteins, and the manner in which carbohydrates, lipids, and smaller moleยญ cules work together to provide the molecular setting of living systems. It might be said that these few decades have replaced a near vacuum of information with a very large surplus. It is in the context of this flood of information that this series of monoยญ graphs on molecular biology has been organized. The idea is to bring together in one place, between the covers of one book, a concise assessment of the state of the subject in a well-defined field.
โฆ Table of Contents
Front Matter....Pages i-xxii
Structure of Ribosomes....Pages 1-27
Immuno Electron Microscopy on Escherichia coli Ribosomes....Pages 28-46
Ribosome Structure, Function, and Evolution: Mapping Ribosomal RNA, Proteins, and Functional Sites in Three Dimensions....Pages 47-67
Structure of Ribosomes and Their Components by Advanced Techniques of Electron Microscopy and Computer Image Analysis....Pages 68-86
A 19 Protein Map of the 30S Ribosomal Subunit of Escherichia coli ....Pages 87-100
Neutron-Scattering Analysis of Structural and Functional Aspects of the Ribosome: The Strategy of the Glassy Ribosome....Pages 101-111
Studies on Crystals of Intact Bacterial Ribosomal Particles....Pages 112-127
Self-Organization of Ribosomal RNA....Pages 128-142
Studies on the Structure and Function of Ribosomal RNA....Pages 143-163
Comparative Structural and Functional Studies on Small Ribosomal RNAs....Pages 164-183
RNA Structure and RNA-Protein Neighborhoods in the Ribosome....Pages 184-202
RNA Structure in Solution and on the 30S Ribosomal Subunit....Pages 203-216
The Folding of RNA in the 30S Subunit of Escherichia coli Ribosomes....Pages 217-232
Probing Ribosomal Structure and Function....Pages 233-252
How Do Protein L18 and 5S RNA Interact?....Pages 253-269
Structure and Interactions of Ribosomal Components and Ligands....Pages 270-285
Protein Topography of Ribosomal Functional Domains: Effects of Monoclonal Antibodies to Different Epitopes in Escherichia coli Protein L7/L12 on Ribosome Function and Structure....Pages 286-308
On the Structure, Function, and Dynamics of L7/L12 from Escherichia coli Ribosomes....Pages 309-325
Ribosomal Proteins: Their Structure and Evolution....Pages 326-361
Photoaffinity Labeling of Escherichia coli Ribosomes: New Approaches and Results....Pages 362-378
Structural Studies of the Factor Binding Domain....Pages 379-390
Studies of the Structure of Eukaryotic (Mammalian) Ribosomes....Pages 391-411
Structural and Functional Aspects of the N 6 , N 6 Dimethyladenosines in 16S Ribosomal RNA....Pages 412-424
Structural Dynamics of the Translating Ribosome....Pages 425-437
Conformational Change of 50S Ribosomes during Protein Synthesis....Pages 438-453
Three tRNA Binding Sites Involved in the Ribosomal Elongation Cycle....Pages 454-472
Structural and Functional Interactions of the tRNA-Ribosome Complex....Pages 473-494
The Movement of tRNA through Ribosomes during Peptide Elongation: The Displacement Reaction Model....Pages 495-508
Isomers of Aminoacyl- and Peptidyl-tRNA in the Peptidyl Transferase Reaction....Pages 509-522
Mechanism of Ribosomal Translocation....Pages 523-540
The Aminoacyl-tRNAยทElongation Factor TuยทGTP Ternary Complex and Its Role in Aminoacyl-tRNA Selection at the Ribosome....Pages 541-555
Stereochemical Analysis of Ribosomal Transpeptidation, Translocation, and Nascent Peptide Folding....Pages 556-572
Ribosomal Proteins Tune Rate and Accuracy in Translation....Pages 573-585
Involvement of Specific Portions of Ribosomal RNA in Defined Ribosomal Functions: A Study Utilizing Antibiotics....Pages 586-604
Inhibitors of Protein Synthesis as Phylogenetic Markers....Pages 605-620
Role of the Initiation Factors in Escherichia coli Translational Initiation....Pages 621-641
Arrangement of Eukaryotic Initiation Factor 3 and Messenger RNA within Preinitiation Complexes....Pages 642-657
Novel Functions of EF-Tu during Polypeptide Synthesis and tuf Gene Expression....Pages 658-671
Elongation Factor Tu Mutants and Site-Directed Mutagenesis of tufA ....Pages 672-685
Site-Directed Mutagenesis of Escherichia coli Ribosomal RNA....Pages 686-698
Structure and Expression of Ribosomal Protein Genes in Yeast....Pages 699-718
The Ribosomal Genes of Yeast and Their Regulation....Pages 719-732
Mutant Studies on the Prokaryotic Ribosome....Pages 733-748
Regulation of the Escherichia coli L10 Operon....Pages 749-765
Control of Ribosome Synthesis in Escherichia coli ....Pages 766-788
Back Matter....Pages 789-810
โฆ Subjects
Cell Biology; Biochemistry, general
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