Protein Engineering: Principles and Practice - Hardcover

 
9780471103547: Protein Engineering: Principles and Practice

Synopsis

PROTEIN ENGINEERING Principles and Practice

Edited by JEFFREY L. CLELAND CHARLES S. CRAIK

Proteins are involved in every aspect of life-structure, motion, catalysis, recognition and regulation. Protein Engineering: Principles and Practice provides a basic framework for understanding both proteins and protein engineering. This comprehensive book covers general, yet essential knowledge required for successful protein engineering, including everything from the fundamentals to modifying existing proteins and developing new proteins.

The book begins by introducing the main concepts of protein engineering, including: understanding protein conformation, comprehending the relationship between protein composition and structure, and potential methods for predicting a protein's conformation.

Other major subjects addressed are:
* Using different host cell expression systems to produce specific proteins
* Protein folding
* Structure and function of proteins in relation to drug design
* Construction of synthetic metal binding sites in proteins
* Manufacture of tissue plasminogen activator
* Generation of therapeutic antibodies

This broad range of topics provides a solid foundation in protein engineering and supplies readers with knowledge essential to the design and production of proteins.

Of primary interest to protein scientists-both students and researchers, in academia as well as industry-Protein Engineering is also extremely useful to chemical engineers, protein chemists, biochemists, and pharmaceutical chemists.

"synopsis" may belong to another edition of this title.

About the Author

Jeffrey L. Cleland and Charles S. Craik are the authors of Protein Engineering: Principles and Practice, published by Wiley.

From the Back Cover

PROTEIN ENGINEERING Principles and Practice

Edited by JEFFREY L. CLELAND CHARLES S. CRAIK

Proteins are involved in every aspect of life-structure, motion, catalysis, recognition and regulation. Protein Engineering: Principles and Practice provides a basic framework for understanding both proteins and protein engineering. This comprehensive book covers general, yet essential knowledge required for successful protein engineering, including everything from the fundamentals to modifying existing proteins and developing new proteins.

The book begins by introducing the main concepts of protein engineering, including: understanding protein conformation, comprehending the relationship between protein composition and structure, and potential methods for predicting a protein's conformation.

Other major subjects addressed are:
* Using different host cell expression systems to produce specific proteins
* Protein folding
* Structure and function of proteins in relation to drug design
* Construction of synthetic metal binding sites in proteins
* Manufacture of tissue plasminogen activator
* Generation of therapeutic antibodies

This broad range of topics provides a solid foundation in protein engineering and supplies readers with knowledge essential to the design and production of proteins.

Of primary interest to protein scientists-both students and researchers, in academia as well as industry-Protein Engineering is also extremely useful to chemical engineers, protein chemists, biochemists, and pharmaceutical chemists.

From the Inside Flap

PROTEIN ENGINEERING Principles and Practice

Edited by JEFFREY L. CLELAND CHARLES S. CRAIK

Proteins are involved in every aspect of life-structure, motion, catalysis, recognition and regulation. Protein Engineering: Principles and Practice provides a basic framework for understanding both proteins and protein engineering. This comprehensive book covers general, yet essential knowledge required for successful protein engineering, including everything from the fundamentals to modifying existing proteins and developing new proteins.

The book begins by introducing the main concepts of protein engineering, including: understanding protein conformation, comprehending the relationship between protein composition and structure, and potential methods for predicting a protein's conformation.

Other major subjects addressed are:
* Using different host cell expression systems to produce specific proteins
* Protein folding
* Structure and function of proteins in relation to drug design
* Construction of synthetic metal binding sites in proteins
* Manufacture of tissue plasminogen activator
* Generation of therapeutic antibodies

This broad range of topics provides a solid foundation in protein engineering and supplies readers with knowledge essential to the design and production of proteins.

Of primary interest to protein scientists-both students and researchers, in academia as well as industry-Protein Engineering is also extremely useful to chemical engineers, protein chemists, biochemists, and pharmaceutical chemists.

"About this title" may belong to another edition of this title.