Biochemistry 10e with Achieve builds on over four decades of exceptional writing, clear graphics, coverage of the latest research technique, and its signature emphasis on physiological and medical relevance with new emphasis on the importance of diversity and team work and a focus on problem-solving techniques and skills. With a new and updated suite of online resources, including hundreds of end-of-chapter problems with answer-specific feedback, activities for in-class and out-of-class, and an emphasis on visualization, Biochemistry with Achieve sets a new standard for biochemistry programs!
Biochemistry 10e with Achieve builds on over four decades of exceptional writing, clear graphics, coverage of the latest research technique, and its signature emphasis on physiological and medical relevance with new emphasis on the importance of diversity and team work and a focus on problem-solving techniques and skills. With a new and updated suite of online resources, including hundreds of end-of-chapter problems with answer-specific feedback, activities for in-class and out-of-class, and an emphasis on visualization, Biochemistry with Achieve sets a new standard for biochemistry programs!
Jeremy Berg; Gregory Gatto Jr.; Justin Hines; John L. Tymoczko; Lubert Stryer
Inhaltsangabe
1 Biochemistry in Space and Time 2 Protein Composition and Structure 3 Binding and Molecular Recognition 4 Protein Methods 5 Enzymes: Core Concepts and Kinetics 6 Enzyme Catalytic Strategies 7 Enzyme Regulatory Strategies 8 DNA, RNA, and the Flow of Genetic Information 9 Nucleic Acid Methods 10 Exploring Evolution and Bioinformatics 11 Carbohydrates and Glycoproteins 12 Lipids and Biological Membranes 13 Membrane Channels and Pumps 14 Signal-Transduction Pathways 15 Metabolism: Basic Concepts and Themes 16 Glycolysis and Gluconeogenesis 17 Pyruvate Dehydrogenase and the Citric Acid Cycle 18 Oxidative Phosphorylation 19 Phototrophy and the Light Reactions of Photosynthesis 20 The Calvin-Benson Cycle and the Pentose Phosphate Pathway 21 Glycogen Metabolism 22 Fatty Acid and Triacylglycerol Metabolism 23 Protein Turnover and Amino Acid Catabolism 24 Integration of Energy Metabolism 25 Biosynthesis of Amino Acids 26 Nucleotide Biosynthesis 27 Biosynthesis of Membrane Lipids and Steroids 28 DNA Replication, Repair, and Recombination 29 RNA Functions, Biosynthesis, and Processing 30 Protein Biosynthesis 31 Control of Gene Expression 32 Principles of Drug Discovery and Development
1 Biochemistry in Space and Time 2 Protein Composition and Structure 3 Binding and Molecular Recognition 4 Protein Methods 5 Enzymes: Core Concepts and Kinetics 6 Enzyme Catalytic Strategies 7 Enzyme Regulatory Strategies 8 DNA, RNA, and the Flow of Genetic Information 9 Nucleic Acid Methods 10 Exploring Evolution and Bioinformatics 11 Carbohydrates and Glycoproteins 12 Lipids and Biological Membranes 13 Membrane Channels and Pumps 14 Signal-Transduction Pathways 15 Metabolism: Basic Concepts and Themes 16 Glycolysis and Gluconeogenesis 17 Pyruvate Dehydrogenase and the Citric Acid Cycle 18 Oxidative Phosphorylation 19 Phototrophy and the Light Reactions of Photosynthesis 20 The Calvin-Benson Cycle and the Pentose Phosphate Pathway 21 Glycogen Metabolism 22 Fatty Acid and Triacylglycerol Metabolism 23 Protein Turnover and Amino Acid Catabolism 24 Integration of Energy Metabolism 25 Biosynthesis of Amino Acids 26 Nucleotide Biosynthesis 27 Biosynthesis of Membrane Lipids and Steroids 28 DNA Replication, Repair, and Recombination 29 RNA Functions, Biosynthesis, and Processing 30 Protein Biosynthesis 31 Control of Gene Expression 32 Principles of Drug Discovery and Development
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