Thermophiles : biology and technology at high temperatures /
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作 者:editors, Frank Robb...[et al.].
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ISBN:9780849392146
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简介
Summary:
Publisher Summary 1
Tools like whole genome analysis and community sequencing have changed all areas of biology, but perhaps the study of thermophiles more radically than most, because scientists can now examine data in air conditioned offices instead of elusive microbes in really hot places, at least sometimes. Researchers from the US, Europe, and Japan discuss the molecular basis of thermostability, heat-stable enzymes and metabolism, the genetics of thermophiles, and minimal complexity model systems. Annotation 漏2008 Book News, Inc., Portland, OR (booknews.com)
目录
Preface p. vii
About the Editors p. ix
Contributors p. xi
Part I Overview p. 1
Chapter 1 Introduction Frank T. Robb and Garabed Antranikian and Dennis W. Grogan and Arnold J.M. Driessen p. 3
Part II Molecular Basis of Thermostability p. 7
Chapter 2 Compatible Solutes of (Hyper)thermophiles and Their Role in Protein Stabilization Helena Santos and Pedro Lamosa and Tiago Q. Faria and Tiago M. Pais and Manuela Lopez de la Paz and Luis Serrano p. 9
Chapter 3 Relationships among Catalytic Activity, Structural Flexibility, and Conformational Stability as Deduced from the Analysis of Mesophilic-Thermophilic Enzyme Pairs and Protein Engineering Studies Reinhard Sterner and Eike Brunner p. 25
Chapter 4 Membranes and Transport Proteins of Thermophilic Microorganisms Sonja Verena Albers and Arnold J.M. Driessen p. 39
Chapter 5 Thermophilic Protein-Folding Systems Frank T. Robb and Pongpan Laksanalamai p. 55
Chapter 6 Physical Properties of Membranes Composed of Tetraether Archaeal Lipids Parkson Lee-Gau Chong p. 73
Part III Heat-Stable Enzymes and Metabolism p. 97
Chapter 7 Glycolysis in Hyperthermophiles Peter Schonheit p. 99
Chapter 8 Industrial Relevance of Thermophiles and Their Enzymes Garabed Antranikian p. 113
Chapter 9 Denitrification Pathway Enzymes of Thermophiles Simon de Vries and Imke Schroder p. 161
Part IV Genetics of Thermophiles p. 177
Chapter 10 DNA Stability and Repair Malcolm F. White and Dennis W. Grogan p. 179
Chapter 11 Plasmids and Cloning Vectors for Thermophilic Archaea Kenneth M. Stedman p. 189
Chapter 12 Genetic Analysis in Extremely Thermophilic Bacteria: An Overview Dennis W. Grogan p. 205
Chapter 13 Targeted Gene Disruption as a Tool for Establishing Gene Function in Hyperthermophilic Archaea Haruyuki Atomi and Tadayuki Imanaka p. 213
Chapter 14 Nanobiotechnological Potential of Viruses of Hyperthermophilic Archaea Tamara Basta and David Prangishvili p. 225
Part V Minimal Complexity Model Systems p. 237
Chapter 15 Master Keys to DNA Replication, Repair, and Recombination from the Structural Biology of Enzymes from Thermophiles Li Fan and R. Scott Williams and David S. Shin and Brian Chapados and John A. Tainer p. 239
Chapter 16 DNA Replication in Thermophiles Jae-Ho Shin and Lori M. Kelman and Zvi Kelman p. 265
Chapter 17 DNA-Binding Proteins and DNA Topology Kathleen Sandman p. 279
Chapter 18 Structure and Evolution of the Thermus thermophilus Ribosome Steven T. Gregory and Albert E. Dahlberg p. 291
Chapter 19 Protein Phosphorylation at 80[degree]C and Above Peter J. Kennelly p. 309
Chapter 20 Archaeal 20S Proteasome: A Simple and Thermostable Model System for the Core Particle Joshua K. Michel and Robert M. Kelly p. 333
Index p. 347
About the Editors p. ix
Contributors p. xi
Part I Overview p. 1
Chapter 1 Introduction Frank T. Robb and Garabed Antranikian and Dennis W. Grogan and Arnold J.M. Driessen p. 3
Part II Molecular Basis of Thermostability p. 7
Chapter 2 Compatible Solutes of (Hyper)thermophiles and Their Role in Protein Stabilization Helena Santos and Pedro Lamosa and Tiago Q. Faria and Tiago M. Pais and Manuela Lopez de la Paz and Luis Serrano p. 9
Chapter 3 Relationships among Catalytic Activity, Structural Flexibility, and Conformational Stability as Deduced from the Analysis of Mesophilic-Thermophilic Enzyme Pairs and Protein Engineering Studies Reinhard Sterner and Eike Brunner p. 25
Chapter 4 Membranes and Transport Proteins of Thermophilic Microorganisms Sonja Verena Albers and Arnold J.M. Driessen p. 39
Chapter 5 Thermophilic Protein-Folding Systems Frank T. Robb and Pongpan Laksanalamai p. 55
Chapter 6 Physical Properties of Membranes Composed of Tetraether Archaeal Lipids Parkson Lee-Gau Chong p. 73
Part III Heat-Stable Enzymes and Metabolism p. 97
Chapter 7 Glycolysis in Hyperthermophiles Peter Schonheit p. 99
Chapter 8 Industrial Relevance of Thermophiles and Their Enzymes Garabed Antranikian p. 113
Chapter 9 Denitrification Pathway Enzymes of Thermophiles Simon de Vries and Imke Schroder p. 161
Part IV Genetics of Thermophiles p. 177
Chapter 10 DNA Stability and Repair Malcolm F. White and Dennis W. Grogan p. 179
Chapter 11 Plasmids and Cloning Vectors for Thermophilic Archaea Kenneth M. Stedman p. 189
Chapter 12 Genetic Analysis in Extremely Thermophilic Bacteria: An Overview Dennis W. Grogan p. 205
Chapter 13 Targeted Gene Disruption as a Tool for Establishing Gene Function in Hyperthermophilic Archaea Haruyuki Atomi and Tadayuki Imanaka p. 213
Chapter 14 Nanobiotechnological Potential of Viruses of Hyperthermophilic Archaea Tamara Basta and David Prangishvili p. 225
Part V Minimal Complexity Model Systems p. 237
Chapter 15 Master Keys to DNA Replication, Repair, and Recombination from the Structural Biology of Enzymes from Thermophiles Li Fan and R. Scott Williams and David S. Shin and Brian Chapados and John A. Tainer p. 239
Chapter 16 DNA Replication in Thermophiles Jae-Ho Shin and Lori M. Kelman and Zvi Kelman p. 265
Chapter 17 DNA-Binding Proteins and DNA Topology Kathleen Sandman p. 279
Chapter 18 Structure and Evolution of the Thermus thermophilus Ribosome Steven T. Gregory and Albert E. Dahlberg p. 291
Chapter 19 Protein Phosphorylation at 80[degree]C and Above Peter J. Kennelly p. 309
Chapter 20 Archaeal 20S Proteasome: A Simple and Thermostable Model System for the Core Particle Joshua K. Michel and Robert M. Kelly p. 333
Index p. 347
Thermophiles : biology and technology at high temperatures /
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