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Membrane proteins, representing nearly 40% of all proteins, are key
components of cells involved in many cellular processes, yet only a
small number of their structures have been determined. Membrane
Protein Structure Determination: Methods and Protocols presents
many detailed techniques for membrane protein structure
determination used today by bringing together contributions from
top experts in the field. Divided into five convenient sections,
the book covers various strategies to purify membrane proteins,
approaches to get three dimensional crystals and solve the
structure by x-ray diffraction, possibilities to gain structural
information for a membrane protein using electron microscopy
observations, recent advances in nuclear magnetic resonance (NMR),
and molecular modelling strategies that can be used either to get
membrane protein structures or to move from atomic structure to a
dynamic understanding of a molecular functioning mechanism. Written
in the highly successful Methods in Molecular Biology (TM) series
format, chapters include introductions to their respective topics,
lists of the necessary materials and reagents, step-by-step,
readily reproducible laboratory protocols, and tips on
troubleshooting and avoiding known pitfalls. Comprehensive and easy
to use, Membrane Protein Structure Determination: Methods and
Protocols serves as an ideal reference for scientists seeking to
further our knowledge of these vital and versatile proteins as well
as our overall understanding of the complicated world of cell
biology.
In this present volume, different approaches are detailed to
produce membrane proteins, purify them, study their function,
determine their structure, and model them in membrane. Since every
membrane protein behaves mostly in a unique way /fashion, knowledge
of guidelines and tricks may help to increase chances to express,
purify and characterize a peculiar membrane protein. Production of
correctly folded protein remains a challenge. Moreover, getting a
functional and stable protein requires to optimize membrane
mimicking environments that can be detergent or artificial
membranes. In some cases, the finding of the correct ligand which
will stabilize the desired conformation is needed. In other cases,
stabilization can be obtained using specific antibodies. This
volume also presents different techniques to analyze the functional
status of membrane proteins. Written in the highly successful
Methods in Molecular Biology series format, chapters in Membrane
Protein Structure and Function Characterization: Methods and
Protocols provide different techniques to analyze the functional
and structural status of membrane proteins. Chapters include
introductions to their respective topics, lists of the necessary
materials and reagents, step-by-step, readily reproducible
laboratory protocols, and tips on troubleshooting and avoiding
known pitfalls. Authoritative and practical, Membrane Protein
Structure and Function Characterization: Methods and Protocols aims
to ensure successful results in the further study of this vital
field.
In this present volume, different approaches are detailed to
produce membrane proteins, purify them, study their function,
determine their structure, and model them in membrane. Since every
membrane protein behaves mostly in a unique way /fashion, knowledge
of guidelines and tricks may help to increase chances to express,
purify and characterize a peculiar membrane protein. Production of
correctly folded protein remains a challenge. Moreover, getting a
functional and stable protein requires to optimize membrane
mimicking environments that can be detergent or artificial
membranes. In some cases, the finding of the correct ligand which
will stabilize the desired conformation is needed. In other cases,
stabilization can be obtained using specific antibodies. This
volume also presents different techniques to analyze the functional
status of membrane proteins. Written in the highly successful
Methods in Molecular Biology series format, chapters in Membrane
Protein Structure and Function Characterization: Methods and
Protocols provide different techniques to analyze the functional
and structural status of membrane proteins. Chapters include
introductions to their respective topics, lists of the necessary
materials and reagents, step-by-step, readily reproducible
laboratory protocols, and tips on troubleshooting and avoiding
known pitfalls. Authoritative and practical, Membrane Protein
Structure and Function Characterization: Methods and Protocols aims
to ensure successful results in the further study of this vital
field.
Membrane proteins, representing nearly 40% of all proteins, are key
components of cells involved in many cellular processes, yet only a
small number of their structures have been determined. Membrane
Protein Structure Determination: Methods and Protocols presents
many detailed techniques for membrane protein structure
determination used today by bringing together contributions from
top experts in the field. Divided into five convenient sections,
the book covers various strategies to purify membrane proteins,
approaches to get three dimensional crystals and solve the
structure by x-ray diffraction, possibilities to gain structural
information for a membrane protein using electron microscopy
observations, recent advances in nuclear magnetic resonance (NMR),
and molecular modelling strategies that can be used either to get
membrane protein structures or to move from atomic structure to a
dynamic understanding of a molecular functioning mechanism. Written
in the highly successful Methods in Molecular Biology (TM) series
format, chapters include introductions to their respective topics,
lists of the necessary materials and reagents, step-by-step,
readily reproducible laboratory protocols, and tips on
troubleshooting and avoiding known pitfalls. Comprehensive and easy
to use, Membrane Protein Structure Determination: Methods and
Protocols serves as an ideal reference for scientists seeking to
further our knowledge of these vital and versatile proteins as well
as our overall understanding of the complicated world of cell
biology.
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