INTRODUCTION TO PROTEIN STRUCTURE BY BRANDEN AND TOOZE PDF

NCBI Bookshelf. Molecular Biology of the Cell. New York: Garland Science; By agreement with the publisher, this book is accessible by the search feature, but cannot be browsed.

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NCBI Bookshelf. Molecular Biology of the Cell. New York: Garland Science; By agreement with the publisher, this book is accessible by the search feature, but cannot be browsed. Turn recording back on. National Center for Biotechnology Information , U. New York: Garland Science ; Search term. New York: Garland Publishing. New York: WH Freeman.

Kyte J Structure in Protein Chemistry. San Francisco: Benjamin Cummings. New York: Springer. Principles that govern the folding of protein chains. Bowie JU , Eisenberg D. Inverted protein structure prediction. Coiled coils: a highly versatile protein folding motif. Trends Cell Biol. Physical principles in the construction of regular viruses. Cold Spring Harb. Doolittle RF. The multiplicity of domains in proteins. Reconstitution of active tobacco mosaic virus from its inactive protein and nucleic acid components.

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Cancer Res. Genome cartography through domain annotation. Genome Biol. Evolution of domain families. Protein Chem. Richards FM. The protein folding problem. Richardson JS. The anatomy and taxonomy of protein structure. Sali A , Kuriyan J. Challenges at the frontiers of structural biology.

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Bourne HR. GTPases: a family of molecular switches and clocks. Structural features of the reactions between antibodies and protein antigens. New York: Scientific American Library. Hazbun TR , Fields S. Networking proteins in yeast. Hunter T. A thousand and one protein kinases. Jones S , Thornton JM. Principles of protein—protein interactions. Escherichia coli aspartate transcarbamoylase: the relation between structure and function.

Khosla C , Harbury PB. Modular enzymes. Koshland DE Jr. Control of enzyme activity and metabolic pathways. Kraut J. Serine proteases: structure and mechanism of catalysis. An evolutionary trace method defines binding surfaces common to protein families. Detecting protein function and protein—protein interactions from genome sequences.

The molecular basis of substrate channeling. Allosteric proteins and cellular control systems. Pavletich NP. Mechanisms of cyclin-dependent kinase regulation: structures of Cdks, their cyclin activators, and Cip and INK4 inhibitors.

Cambridge: Cambridge University Press. Phillips DC. The hen egg white lysozyme molecule. Radzicka A , Wolfenden R. A proficient enzyme. Schramm VL. Enzymatic transition states and transition state analog design. From molecular diversity to catalysis: lessons from the immune system. Sicheri F , Kuriyan J. Structures of Src-family tyrosine kinases. Evolution of protein function, from a structural perspective. Crystal structure of the calcium pump of sarcoplasmic reticulum at 2.

The way things move: looking under the hood of molecular motor proteins. Catalysis by hen egg-white lysozyme proceeds via a covalent intermediate. Walsh C.

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Introduction to protein structure / Carl Branden, John Tooze.

Reference details. Open print view. Location: ALLW. Coupure Links - Gebouw A Gent. View on Google Maps. View library. Location: DI04C.

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Introduction to Protein Structure

Methods for Protein Analysis pp Cite as. Proteins from the Greek word protos , meaning first occur ubiquitously throughout all organisms, where they participate in a wide variety of biological functions. Proteins provide the structural rigidity and flexibility associated with external body parts such as skin, hair, and the exoskeletons of arthropods. By changing their structure they provide the basis for biological motions, such as muscle contraction. A large class of proteins, the enzymes, serve as biological catalysts, enhancing greatly the rates of chemical reactions that are vital to life Copeland,

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