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Directed enzyme evolution : advances and applications / Miguel Alcalde, editor.

Contributor(s): Alcalde, Miguel,, editor literario
Material type: materialTypeLabelE-bookPublisher: Cham, Switzerland : Springer, [2017]Description: 1 recurso en línea.ISBN: 3319504134; 9783319504131.Subject: Enzimas -- BiotechnologyOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
1. Directed evolution for Opsin Engineering (Prof. Frances H. Arnold, Caltech, USA) -- 2. Directed evolution for enzyme enantio-selectivity (Prof. Manfred T. Reetz, Max-Planck-Institut für Kohlenforschung, Germany) -- 3. Directed evolution for fuels and chemicals (Prof. Huimin Zhao, University of Urbana-Champaign, Illinois, USA) -- 4. Directed evolution for cancer biopharmaceuticals (Prof. Dane Wittrup, MIT, USA) -- 5. Directed evolution of the ligninolytic consortium (Prof. Miguel Alcalde, Institute of Catalysis, CSIC, Madrid, Spain) -- 6. Directed evolution for engineering of metabolic pathways (Prof. Claudia Schmidt-Dannert, University of Minnesota, USA) -- 7. Directed evolution and metagenomics (Prof. Kenneth N. Timmis, Technische Universität Braunschweig, Germany) -- 8. Directed evolution and protein evolvability (Prof. Jesse Bloom, Fred Hutchinson Cancer Research Center, Seattle, USA) -- 9. Directed evolution for understanding natural evolution (Prof. Dan S. Tawfik, Weizmann Institute of Science, Rehovot, Israel) -- 10. Diversity methods for directed evolution (Prof. Ullrich Schwaneberg, RWTH-Aachen University, Germany) -- 11. Ancestral enzymes, evolution and resurrection (Prof. Jose Manuel Sanchez Ruiz, Universidad de Granada, Spain) -- 12. Directed evolution and computational protein algorithms (Prof. Victor Guallar, Barcelona Supercomputing Center, Spain).
Abstract: This book focuses on some of the most significant advances in enzyme engineering that have been achieved through directed evolution and hybrid approaches. On the 25th anniversary of the discovery of directed evolution, this volume is a tribute to the pioneers of this thrilling research field, and at the same time provides a comprehensive overview of current research and the state of the art. Directed molecular evolution has become the most reliable and robust method to tailor enzymes, metabolic pathways or even whole microorganisms with improved traits. By mirroring the Darwinian algorithm of natural selection on a laboratory scale, new biomolecules of invaluable biotechnological interest can now be engineered in a manner that surpasses the boundaries of nature. The volume is divided into two sections, the first of which provides an update on recent successful cases of enzyme ensembles from different areas of the biotechnological spectrum, including tryptophan synthases, unspecific peroxygenases, phytases, therapeutic enzymes, stereoselective enzymes and CO2-fixing enzymes. This section also provides information on the directed evolution of whole cells. The second section of the book summarizes a variety of the most applicable methods for library creation, together with the future trends aimed at bringing together directed evolution and in silico/computational enzyme design and ancestral resurrection.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería QH442 .D574 2017 EB (Browse shelf(Opens below)) Acceso electrónico eBook.20023009
Total holds: 0

SpringerLink Springer Biomedical and Life Sciences eBooks 2017 English+International

Incluye referencias bibliográficas

1. Directed evolution for Opsin Engineering (Prof. Frances H. Arnold, Caltech, USA) -- 2. Directed evolution for enzyme enantio-selectivity (Prof. Manfred T. Reetz, Max-Planck-Institut für Kohlenforschung, Germany) -- 3. Directed evolution for fuels and chemicals (Prof. Huimin Zhao, University of Urbana-Champaign, Illinois, USA) -- 4. Directed evolution for cancer biopharmaceuticals (Prof. Dane Wittrup, MIT, USA) -- 5. Directed evolution of the ligninolytic consortium (Prof. Miguel Alcalde, Institute of Catalysis, CSIC, Madrid, Spain) -- 6. Directed evolution for engineering of metabolic pathways (Prof. Claudia Schmidt-Dannert, University of Minnesota, USA) -- 7. Directed evolution and metagenomics (Prof. Kenneth N. Timmis, Technische Universität Braunschweig, Germany) -- 8. Directed evolution and protein evolvability (Prof. Jesse Bloom, Fred Hutchinson Cancer Research Center, Seattle, USA) -- 9. Directed evolution for understanding natural evolution (Prof. Dan S. Tawfik, Weizmann Institute of Science, Rehovot, Israel) -- 10. Diversity methods for directed evolution (Prof. Ullrich Schwaneberg, RWTH-Aachen University, Germany) -- 11. Ancestral enzymes, evolution and resurrection (Prof. Jose Manuel Sanchez Ruiz, Universidad de Granada, Spain) -- 12. Directed evolution and computational protein algorithms (Prof. Victor Guallar, Barcelona Supercomputing Center, Spain).

This book focuses on some of the most significant advances in enzyme engineering that have been achieved through directed evolution and hybrid approaches. On the 25th anniversary of the discovery of directed evolution, this volume is a tribute to the pioneers of this thrilling research field, and at the same time provides a comprehensive overview of current research and the state of the art. Directed molecular evolution has become the most reliable and robust method to tailor enzymes, metabolic pathways or even whole microorganisms with improved traits. By mirroring the Darwinian algorithm of natural selection on a laboratory scale, new biomolecules of invaluable biotechnological interest can now be engineered in a manner that surpasses the boundaries of nature. The volume is divided into two sections, the first of which provides an update on recent successful cases of enzyme ensembles from different areas of the biotechnological spectrum, including tryptophan synthases, unspecific peroxygenases, phytases, therapeutic enzymes, stereoselective enzymes and CO2-fixing enzymes. This section also provides information on the directed evolution of whole cells. The second section of the book summarizes a variety of the most applicable methods for library creation, together with the future trends aimed at bringing together directed evolution and in silico/computational enzyme design and ancestral resurrection.

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