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Biological techniques --- Molecular biology --- Biotechnology --- Protein Engineering --- Protein engineering --- Technologie des protéines --- Protein Engineering. --- #ABIB:aimm --- Engineering, Protein --- Protein design --- Proteins --- Biochemical engineering --- Genetic engineering --- Genetic Engineering, Protein --- Proteins, Genetic Engineering --- Genetic Engineering of Proteins --- Engineering, Protein Genetic --- Protein Genetic Engineering --- Genetic Engineering --- Directed Molecular Evolution --- DNA Shuffling --- Molecular Farming --- Design --- Protein engineering. --- Technologie des protéines --- Genetic engineering. --- Molecular structure. --- Mutation
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Protein Engineering, Design and Selection (PEDS) publishes research papers and review articles relevant to the engineering, design and selection of proteins for use in biotechnology and therapy, and for understanding fundamental properties of activity, stability, folding, misfolding and disease. With reputable protein scientists as editors and board members, PEDS offers expert, high-quality peer review and a fast turnaround time.
Protein engineering --- Protein Engineering. --- Protein engineering. --- Engineering, Protein --- Protein design --- Proteins --- Genetic Engineering, Protein --- Proteins, Genetic Engineering --- Genetic Engineering of Proteins --- Engineering, Protein Genetic --- Protein Genetic Engineering --- Design --- Protein Engineering --- Biochemical engineering --- Genetic engineering --- Genetic Engineering --- Directed Molecular Evolution --- DNA Shuffling --- Molecular Farming --- Technology.
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This manual is an indispensable tool for introducing advanced undergraduates and beginning graduate students to the techniques of recombinant DNA technology, or gene cloning and expression. The techniques used in basic research and biotechnology laboratories are covered in detail. Students gain hands-on experience from start to finish in subcloning a gene into an expression vector, through purification of the recombinant protein.The second edition has been completely re-written, with new laboratory exercises and all new illustrations and text, designed for a typical 15-week semester,
Molecular biology --- Technique --- DNA, Recombinant. --- Molecular Biology --- Protein Engineering. --- methods. --- Genetic Engineering, Protein --- Proteins, Genetic Engineering --- Genetic Engineering of Proteins --- Engineering, Protein --- Engineering, Protein Genetic --- Protein Genetic Engineering --- Recombinant DNA Research --- Recombination Joint --- Genes, Spliced --- Recombinant DNA --- DNA Research, Recombinant --- Joint, Recombination --- Research, Recombinant DNA --- Spliced Genes --- Molecular biochemistry --- Molecular biophysics --- Genetic Engineering --- Directed Molecular Evolution --- DNA Shuffling --- Molecular Farming --- Cloning, Molecular --- DNA Transposable Elements --- Genetic Vectors --- Genomic Library --- Gene Library --- Artificial Gene Fusion --- Biochemistry --- Biophysics --- Biomolecules --- Systems biology
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Contemporary solid-phase peptide synthesis is a streamlined, automated technology and its products are more readily available to a larger group of researchers than ever before. But because many researchers rely on contract services to obtain their peptides, they are often not familiar with the "tricks of the trade" in artificial peptide design, manufacturing, and handling. This practical guide to the new peptide synthesis helps you to use artificial peptides more effectively, devise efficient experiments and avoid common pitfalls. The appendix lists sources offering custom peptide synthesis or other analytical services. Synthetic Peptides is the second volume in the UWBC Biotechnical Resource Series with Dr. Richard R. Burgess, Director of the University of Wisconsin Biotechnology Center, as Series Editor. The series is dedicated to providing practical guidance to researchers exploring new technologies and services.
Human biochemistry --- Peptides --- Protein engineering --- Protein Engineering --- Synthesis --- Peptide --- peptides --- Synthèse chimique --- Chemical synthesis --- Utilisation --- uses --- Inhibiteur d'enzyme --- Enzyme inhibitors --- Vaccin --- Vaccines --- Technique des traceurs --- Tracer techniques --- Technique immunoenzymatique --- Immunoenzyme techniques --- Protein Engineering. --- 577.112.6 --- -Protein engineering --- Engineering, Protein --- Protein design --- Proteins --- Biochemical engineering --- Genetic engineering --- Organic compounds --- Amino acids --- Genetic Engineering, Protein --- Proteins, Genetic Engineering --- Genetic Engineering of Proteins --- Engineering, Protein Genetic --- Protein Genetic Engineering --- Genetic Engineering --- Directed Molecular Evolution --- DNA Shuffling --- Molecular Farming --- Synthetic peptides and polypeptides --- Design --- Protein engineering. --- Synthesis. --- 577.112.6 Synthetic peptides and polypeptides --- Peptide synthesis --- Peptide de synthese --- Peptide antisens --- Biotechnologie --- Solid phase peptide synthesis --- Preparation
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Genomics --- Proteomics --- Protein engineering --- Genomics. --- Protein Engineering. --- Proteome --- Protein engineering. --- Proteomics. --- Molecular biology --- Proteins --- Engineering, Protein --- Protein design --- Biochemical engineering --- Genetic engineering --- Genome research --- Genomes --- Molecular genetics --- Genetic Engineering, Protein --- Proteins, Genetic Engineering --- Genetic Engineering of Proteins --- Engineering, Protein Genetic --- Protein Genetic Engineering --- Genetic Engineering --- Directed Molecular Evolution --- DNA Shuffling --- Molecular Farming --- Comparative Genomics --- Comparative Genomic --- Genomic, Comparative --- Genomics, Comparative --- Human Genome Project --- Genome --- instrumentation. --- biosynthesis. --- genetics. --- Design --- Research --- Human medicine --- proteomics --- genomics --- Agriculture Sciences --- Chemistry --- Health Sciences --- Information Technology --- Life Sciences --- Agricultural Biotechnology --- Biochemistry --- Diseases --- Preventive Medicine --- Computational Biosciences --- Biology --- General and Others
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Protein engineering. --- Protein engineering --- Protein Engineering --- Proteins --- Protein Conformation --- Carrier Proteins --- Models, Molecular --- 577.122 --- Molecular Models --- Model, Molecular --- Molecular Model --- Molecular Conformation --- Molecular Structure --- Conformation, Protein --- Conformations, Protein --- Protein Conformations --- Protein Folding --- Binding Protein --- Binding Proteins --- Carrier Protein --- Transport Protein --- Transport Proteins --- Protein, Binding --- Protein, Carrier --- Protein, Transport --- Proteins, Binding --- Proteins, Carrier --- Proteins, Transport --- Protein Binding --- Receptors, Transferrin --- 577.122 Protein metabolism --- Protein metabolism --- Engineering, Protein --- Protein design --- Biochemical engineering --- Genetic engineering --- Genetic Engineering, Protein --- Proteins, Genetic Engineering --- Genetic Engineering of Proteins --- Engineering, Protein Genetic --- Protein Genetic Engineering --- Genetic Engineering --- Directed Molecular Evolution --- DNA Shuffling --- Molecular Farming --- chemistry --- Design
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Protein folding --- RNA --- Biomolecules --- Protein Engineering. --- Protein Folding. --- Proteins --- Protéines --- ARN --- Biomolécules --- Conformation --- Design --- analysis. --- Repliement --- Protein Folding, Globular --- Folding, Globular Protein --- Folding, Protein --- Foldings, Globular Protein --- Foldings, Protein --- Globular Protein Folding --- Globular Protein Foldings --- Protein Foldings --- Protein Foldings, Globular --- Genetic Engineering, Protein --- Proteins, Genetic Engineering --- Genetic Engineering of Proteins --- Engineering, Protein --- Engineering, Protein Genetic --- Protein Genetic Engineering --- Biological molecules --- Ribonucleic acid --- Ribose nucleic acid --- Folding of proteins --- Folding --- Protein Engineering --- Protein Folding --- analysis --- Gene Products, Protein --- Gene Proteins --- Protein Gene Products --- Proteins, Gene --- Molecular Mechanisms of Pharmacological Action --- Proteostasis --- Protein Multimerization --- Intrinsically Disordered Proteins --- Genetic Engineering --- Directed Molecular Evolution --- DNA Shuffling --- Molecular Farming --- Molecules --- Molecular biology --- Nucleic acids --- Ribose --- Protéines --- Biomolécules --- Protein folding. --- Protein --- Protein engineering. --- Technologie des protéines. --- Protein design --- Biochemical engineering --- Genetic engineering --- Conformació de proteïnes. --- Enginyeria de proteïnes. --- Revistes electròniques. --- Enginyeria de proteïnes --- Proteïnes --- Biomolècules --- Anàlisi --- Disseny --- Conformació --- Technologie des protéines. --- Enginyeria de proteïnes --- Anàlisi --- Conformació
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Medical genetics. --- Pharmacogenomics. --- Human genome. --- Protein engineering. --- Proteins. --- Genomics. --- Proteomics --- Genetics, Medical. --- Protein Engineering. --- Proteome. --- Proteomics. --- Molecular biology --- Proteins --- Proteids --- Biomolecules --- Polypeptides --- Engineering, Protein --- Protein design --- Biochemical engineering --- Genetic engineering --- Genomes --- Pharmacogenetics --- Clinical genetics --- Diseases --- Heredity of disease --- Human genetics --- Medical sciences --- Pathology --- Genetic disorders --- Human chromosomes --- Genome research --- Molecular genetics --- Genomics --- Proteomes --- Genetic Engineering, Protein --- Proteins, Genetic Engineering --- Genetic Engineering of Proteins --- Engineering, Protein Genetic --- Protein Genetic Engineering --- Genetic Engineering --- Directed Molecular Evolution --- DNA Shuffling --- Molecular Farming --- Comparative Genomics --- Comparative Genomic --- Genomic, Comparative --- Genomics, Comparative --- Human Genome Project --- Genome --- Medical Genetics --- Anthropology, Physical --- Chromosome Disorders --- Sex Chromosome Disorders --- Genetic Diseases, Inborn --- Molecular Medicine --- Design --- Effect of drugs on --- Genetic aspects --- Research --- genomics --- proteomics
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Biology --- Cells --- Protein Conformation --- Protein Engineering --- Protein Folding --- Molecular Sequence Data --- Molecular biology --- Molecular structure --- Cytology --- Protein folding --- RNA --- Biomolecules --- Biologie moléculaire --- Structure moléculaire --- Cytologie --- Protéines --- ARN --- Biomolécules --- ultrastructure --- Periodicals. --- Conformation --- Design --- Périodiques --- Repliement --- Conception --- Molecular Structure. --- Protein Conformation. --- Protein Engineering. --- Protein Folding. --- ultrastructure. --- Molecular Biology. --- Molecular Sequence Data. --- #TS:KOME --- Protein Folding, Globular --- Folding, Globular Protein --- Folding, Protein --- Foldings, Globular Protein --- Foldings, Protein --- Globular Protein Folding --- Globular Protein Foldings --- Protein Foldings --- Protein Foldings, Globular --- Protein Multimerization --- Intrinsically Disordered Proteins --- Genetic Engineering, Protein --- Proteins, Genetic Engineering --- Genetic Engineering of Proteins --- Engineering, Protein --- Engineering, Protein Genetic --- Protein Genetic Engineering --- Genetic Engineering --- Directed Molecular Evolution --- DNA Shuffling --- Molecular Farming --- Conformation, Protein --- Conformations, Protein --- Protein Conformations --- Proteins --- Structure, Molecular --- Molecular Structures --- Structures, Molecular --- Models, Molecular --- Molecular Sequencing Data --- Sequence Data, Molecular --- Data, Molecular Sequence --- Data, Molecular Sequencing --- Sequencing Data, Molecular --- Biochemical Genetics --- Biology, Molecular --- Genetics, Biochemical --- Genetics, Molecular --- Molecular Genetics --- Biochemical Genetic --- Genetic, Biochemical --- Genetic, Molecular --- Molecular Genetic --- Periodicals --- Life Sciences --- Bioinformatics --- Cytology, Cell Biology --- Micro and Molecular Biology --- Genetic Phenomena --- Molecular Structure --- Proteostasis --- Molecular Biology
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Host-Guest Molecular Interactions: From Chemistry to Biology Chairman: I.O. Sutherland 1991 Host-guest molecular interactions lead to the formation of molecular assemblies containing two or more species. It has long been recognized that such 'supramolecular' association is of fundamental importance in biological processes, but it is only recently that chemists have begun to design and synthesize novel host molecules. The field is relatively new, but exciting applications are already emerging, for example in the development of molecular sensors, of new chromogenic reagents and of reagents for selective metal ion capture or for the capture of molecules such as urea. In addition, it is expected that improved understanding of the interactions in relatively simple complexes of synthetic host molecules will lead to a better understanding of the much more complex biological systems in which the host molecules are either proteins or nucleic acids. In this book the contributions from experts in the chemical and biological sciences range over intermolecular interactions in both synthetic and natural (biological) systems. Topics covered include biomimetic chemistry, the design of synthetic host molecules which mimic biological processes such as ion transport across membranes and catalysis, and the concepts of preorganization and template-directed synthesis. Molecular recognition processes involved in binding of antibiotics to peptides and to DNA and in binding of sequence-specific gene inhibitors to DNA are discussed. The potential applications of oligonucleotides with modified phosphate diester linkages as probes of DNA-protein interactions and for anti-HIV treatment are described. Interactions between proteins and other molecules and the computational modelling of interactions are considered. Related Ciba Foundation Symposia: No 119 Synthetic peptides as antigens Chairman: G.L. Ada 1986 ISBN 0 471 99838 9 No 145 Carbohydrate recognition in cellular function Chairman:
Ligand binding (Biochemistry) --- Drugs --- Protein engineering --- Protein binding --- Congresses. --- Design --- Drug Design. --- Ligands. --- Carrier Proteins. --- Protein Engineering. --- Genetic Engineering, Protein --- Proteins, Genetic Engineering --- Genetic Engineering of Proteins --- Engineering, Protein --- Engineering, Protein Genetic --- Protein Genetic Engineering --- Genetic Engineering --- Directed Molecular Evolution --- DNA Shuffling --- Molecular Farming --- Binding Protein --- Binding Proteins --- Transport Proteins --- Protein, Binding --- Proteins, Binding --- Proteins, Carrier --- Proteins, Transport --- Protein Binding --- Receptors, Transferrin --- Drug Modeling --- Design, Drug --- Designs, Drug --- Drug Designs --- Drug Modelings --- Modeling, Drug --- Modelings, Drug --- Medicaments --- Medications --- Medicine (Drugs) --- Medicines (Drugs) --- Pharmaceuticals --- Prescription drugs --- Bioactive compounds --- Medical supplies --- Pharmacopoeias --- Chemotherapy --- Materia medica --- Pharmacology --- Pharmacy --- Binding, Ligand (Biochemistry) --- Biochemistry --- Dye-ligand affinity chromatography --- Radioligand assay --- Molecular biology --- Conferences - Meetings --- Carrier Proteins --- Drug Design --- Ligands --- Protein Engineering --- Design&delete& --- Congresses --- Ligand binding (Biochemistry) - Congresses. --- Drugs - Design - Congresses. --- Protein engineering - Congresses. --- Protein binding - Congresses. --- Computer-Aided Drug Design --- Computerized Drug Design --- Pharmaceutical Design --- Computer Aided Drug Design --- Computer-Aided Drug Designs --- Computerized Drug Designs --- Design, Computer-Aided Drug --- Design, Computerized Drug --- Design, Pharmaceutical --- Designs, Computer-Aided Drug --- Designs, Computerized Drug --- Designs, Pharmaceutical --- Drug Design, Computer-Aided --- Drug Design, Computerized --- Drug Designs, Computer-Aided --- Drug Designs, Computerized --- Pharmaceutical Designs --- Ligand --- Carrier Protein --- Transport Protein --- Protein, Carrier --- Protein, Transport
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