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Preface/Front Matter
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Jon Beckwith, David Zipser |
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Excerpt
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(i-ix) |
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Chapter I: Introduction
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François Jacob, Jacques Monod |
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Excerpt
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(1-4) |
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Chapter II: Lac: The Genetic System
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Jonathan R. Beckwith |
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Excerpt
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(5-26) |
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Chapter III: β-galactosidase and Thiogalactoside Transacetylase
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Irving Zabin, Audrée V. Fowler |
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(27-47) |
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Chapter IV: The Lactose Permease System of Escherichia coli
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Eugene P. Kennedy |
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Excerpt
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(49-92) |
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Chapter V: The Lactose Repressor
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Walter Gilbert, Benno Müller-Hill |
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Excerpt
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(93-109) |
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Chapter VI: Transcription of the Lactose Operon in E. coli
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Gérard Contesse, Michel Crépin, François Gros |
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Excerpt
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(111-141) |
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Chapter VII: Complementation in β-galactosidase
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Agnès Ullmann, David Perrin |
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Excerpt
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(143-172) |
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Chapter VIII: Transcription Starts and Stops in the lac Operon
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Jeffrey H. Miller |
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Excerpt
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(173-188) |
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Chapter IX: Glucose Effects: Inducer Exclusion and Repression
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Boris Magasanik |
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Excerpt
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(189-219) |
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Chapter X: Polarity and Translational Punctuation
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David Zipser |
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Excerpt
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(221-232) |
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Research Article 1: Isolation of β-Thiogalactoside Binding Proteins of Escherichia coli by Specific Adsorbents
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Shiro Tomino, Kenneth Paigen |
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Excerpt
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(233-249) |
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Research Article 2: Isoenzymes of Bacterial β-galactosidase: Renaturation of Heavier Isoenzymes from Dissociated E. coli β-galactosidase
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Robert P. Erickson, Edward Steers, Jr. |
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Excerpt
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(251-263) |
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Research Article 3: On the Stoichiometry and Kinetics of ω Complementation of E. coli β-galactosidase
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Agnes Ullmann, Jacques Monod |
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Excerpt
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(265-272) |
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Research Article 4: Structural Studies of ω-complemented β-galactosidase of Escherichia coli
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Michel E. Goldberg |
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Excerpt
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(273-278) |
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Research Article 5: Partial Loss of Activity of Individual Molecules of Aged β-galactosidase
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M. Boris Rotman |
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Excerpt
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(279-289) |
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Research Article 6: Antibody Mediated Activation of a Defective β-galactosidase (AMEF). Characteristics of Binding and Activation Processes
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Franco Celada, Roberto Strom, Kerstin Bodlund |
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Excerpt
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(291-303) |
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Research Article 7: The Activation of Mutant β-galactosidase by Specific Antibodies
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Walter Messer, Fritz Melchers |
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Excerpt
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(305-315) |
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Research Article 8: Is Subunit Assembly a Rate-Limiting Factor on Induction?
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Lucille Adamson, Carol Gross, Aaron Novick |
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Excerpt
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(317-323) |
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Research Article 9: Superrepressors of the lac Operon
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Suzanne Bourgeois, Alan Jobe |
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Excerpt
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(325-341) |
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Research Article 10: Strains with the Promoter Deletion L1 Synthesize An Altered lac Repressor
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Jeffrey H. Miller, Terry Platt, Klaus Weber |
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Excerpt
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(343-351) |
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Research Article 11: Deletion of Translational Start Signals in the lac Operon of E. coli
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Larry Eron, Jonathan R. Beckwith, François Jacob |
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Excerpt
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(353-358) |
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Research Article 12: Some Properties of Insertion Mutations in the lac Operon
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Michael H. Malamy |
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Excerpt
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(359-373) |
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Research Article 13: Cell-Free Studies on the Regulation of the lac Operon
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G. Zubay, D. A. Chambers, L C. Cheong |
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Excerpt
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(375-391) |
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Research Article 14: Cyclic Adenosine Monophosphate Diesterase Activity and Catabolite Repression in E. coli
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D. Monard, J. Janeček, H. V. Rickenberg |
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Excerpt
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(393-400) |
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Research Article 15: On the Mechanism of Catabolite Repression
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G. Contesse, M. Crépin, F. Gros, A. Ullmann, J. Monod |
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Excerpt
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(401-415) |
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Research Article 16: Mutants Missing a Factor Necessary for the Expression of Catabolite-Sensitive Operons in E. coli
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Danièle Schwartz, Jonathan R. Beckwith |
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Excerpt
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(417-424) |
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