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Recombinant Gene Expression

by Argelia Lorence

Studies related to recombinant gene expression have brought new advance such as the emergence of the "omics" technologies. While Escherichia coli, Sacharomyces cerevisiae and insect cells continue to be the dominant production platforms of recombinant proteins. In Recombinant Gene Expression: Review and Protocols, Third Edition, expert researchers in the field detail many of the methods now commonly used to study recombinant gene expression. These include methods and techniques for bacteria, lower eukaryotes, fungi, plants and plant cells, and animals and animal cells. Written in the highly successful Methods in Molecular BiologyTM series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and key tips on troubleshooting and avoiding known pitfalls. Authoritative and practical, Recombinant Gene Expression: Review and Protocols, Third Edition seeks to aid scientists in the further study of this crucially important research into recombinant gene expression.

Recombinant Gene Expression

by Argelia Lorence Paulina Balbas

In this second updated edition, the editors have added critical reviews to a collection of cutting-edge protocols for gene expression in bacteria, fungi, plants, plant cells, animals, and animal cells. The review articles survey new directions in recombinant gene expression research, technique, and application, and point the way to using recombinant gene expression for metabolic engineering and the production of non-protein molecules. The readily reproducible protocols offer new host-vector systems, such as Anarctic bacteria and moderately halophytic bacteria, vectors for chromosomal editing and metabolic engineering, and information to aid in problem solving, strategy planning, and the promotion of protein folding. Recombinant Gene Expression: Reviews and Protocols, Second Edition offers investigators seeking an overview of this critically important field the understanding and the tools needed to begin producing nonprotein products and altering the central metabolic pathways of cells to enhance heterologous gene expression.

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