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Recombinant Protein Expression: Prokaryotic hosts and cell-free systems: Volume 659
Details
Informationen zum Autor William Brad O'Dell is a PhD biologist experienced in in Molecular Biology, Protein Expression, Protein Purification, Crystallography, Lab-Scale Yeast Fermentation, Flow Cytometry and Small Angle Scattering of Molecules and Materials. Zvi Kelman is the Director of the Biomolecular Labeling Laboratory (BL2), National Institute of Standards and Technology (NIST). He is also an Adjunct Professor in the Department of Cell Biology and Molecular Genetics at the University of Maryland, College Park and affiliated with the Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine. Zvi earned a B.Sc. in Agriculture from the Hebrew University in Jerusalem and a M.Sc. in Cell Biology from the Weizmann Institute of Science. After receiving a Ph.D. in Molecular Biology from Cornell University, he was a Helen Hay Whitney Foundation Post-Doctoral Fellow at Johns Hopkins University and Memorial Sloan-Kettering Cancer Center. Upon completion of his postgraduate training, he became a Life Technologies Professor at the Center for Advanced Research in Biotechnology (CARB), University of Maryland Biotechnology Institute (UMBI). Zvi moved to the University of Maryland, College Park in 2010 as a Professor in the Department of Cell Biology and Molecular Genetics. In 2011 he was recruited to NIST to direct the Biomolecular Labeling Laboratory.
Autorentext
William Brad O'Dell is a PhD biologist experienced in in Molecular Biology, Protein Expression, Protein Purification, Crystallography, Lab-Scale Yeast Fermentation, Flow Cytometry and Small Angle Scattering of Molecules and Materials. Zvi Kelman is the Director of the Biomolecular Labeling Laboratory (BL2), National Institute of Standards and Technology (NIST). He is also an Adjunct Professor in the Department of Cell Biology and Molecular Genetics at the University of Maryland, College Park and affiliated with the Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine. Zvi earned a B.Sc. in Agriculture from the Hebrew University in Jerusalem and a M.Sc. in Cell Biology from the Weizmann Institute of Science. After receiving a Ph.D. in Molecular Biology from Cornell University, he was a Helen Hay Whitney Foundation Post-Doctoral Fellow at Johns Hopkins University and Memorial Sloan-Kettering Cancer Center. Upon completion of his postgraduate training, he became a Life Technologies Professor at the Center for Advanced Research in Biotechnology (CARB), University of Maryland Biotechnology Institute (UMBI). Zvi moved to the University of Maryland, College Park in 2010 as a Professor in the Department of Cell Biology and Molecular Genetics. In 2011 he was recruited to NIST to direct the Biomolecular Labeling Laboratory.
Inhalt
Preface* Bacterial hosts
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1. Starting a new recombinant protein production project in Escherichia coli
From the notebook to recombinant protein production in Escherichia coli: design of expression vectors and gene cloning
Use of tandem affinity-buffer exchange chromatography online with native mass spectrometry for optimizing overexpression and purification of recombinant proteins
Purification, reconstitution, and mass analysis of archaeal RNase P, a multi-subunit ribonucleoprotein enzyme
Production of antibodies in SHuffle E. coli strains**
Improved folding of recombinant protein via co-expression of exogenous chaperones**
Fusing an insoluble protein to GroEL apical domain enhances soluble expression in Escherichia coli
Method for high-efficiency fed-batch cultures of recombinant Escherichia coli
Fed-batch production of deuterated protein in Escherichia coli for neutron scattering experimentation * Archaeal hosts
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Thermococcus kodakarensis provides a versatile hyperthermophilic archaeal platform for protein expression**
Recombinant protein expression in Sulfolobus islandicus
High-level synthesis and secretion of laccase, a metalloenzyme biocatalyst, by the halophilic archaeon Haloferax volcanii
Tandem affinity purification of 20S proteasomes and other multisubunit complexes in Haloferax volcanii
Purification and characterization of ribonucleoprotein effector complexes of Sulfolobus islandicus CRISPR-Cas systems * Cell-free systems
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Guidelines for nucleic acid template design for optimal cell-free protein synthesis using an E. coli reconstituted system or a lysate-based system**
Cell-free protein synthesis of CRISPR ribonucleoproteins (RNP)**
Leishmania tarentolae cell-free based approach for rapid antibody: antigen interaction analysis**
Cell-free protein synthesis using Chinese hamster ovary cells**
Weitere Informationen
- Allgemeine Informationen
- GTIN 09780323901468
- Genre Biology
- Editor William B. O'Dell, Kelman Zvi
- Sprache Englisch
- Anzahl Seiten 460
- Größe H229mm x B152mm
- Jahr 2021
- EAN 9780323901468
- Format Fester Einband
- ISBN 978-0-323-90146-8
- Veröffentlichung 28.10.2021
- Titel Recombinant Protein Expression: Prokaryotic hosts and cell-free systems: Volume 659
- Gewicht 450g
- Herausgeber Elsevier Science & Technology