Spectral Techniques In Proteomics

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advanced proteomics research applications
Alpha Cyano-4 Hydroxycinnamic Acid
ATP Binding Site
Category=PSB
chemical
Chemical Proteomics
Chemical Shift
Electrospray Ionization Mass Spectrometry
EPR Spectrum
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fluorescence spectroscopy
HSQC Spectrum
ICAT labeling techniques
larsen
MALDI MS
mass
Mass Analyzer
Mass Spectrometer
Mass Spectrometry
metabolic pathway mapping
modification
MS
NMR Spectroscopy
Nuclear Pore Complex
post-translational
post-translational modification
Protein Chip
protein interaction analysis
Protein Kinases
Protein Ligand Interactions
Sample Preparation
SELDI Analysis
SELDI Profile
shift
Shotgun Proteomics
spectrometer
spectrometry
structural
Structural Proteomics
Structure Based Drug Design
Surface Plasmon Resonance Biosensors
tandem
TROSY
x-ray crystallography methods

Product details

  • ISBN 9780367389284
  • Weight: 798g
  • Dimensions: 156 x 234mm
  • Publication Date: 18 Oct 2019
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: GB
  • Product Form: Paperback
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Facilitating the innovation, development, and application of new spectroscopic methods in proteomics, Spectral Techniques in Proteomics provides a broad overview of the spectroscopic toolbox that can be used, either with proteome or sub-proteome mixtures or with individual/purified proteins studied in parallel. It gives a modest overview of existing and proven techniques as well as a detailed examination of less established spectroscopic methods with studied speculation on future applications.

Intended for a broad audience of protein biochemists and biophysicists, the book adopts a wider definition of proteomics to include the systems-based study of proteomes and sub-proteomes involving proteins related through regulatory cascades, metabolic pathways, post-translational modifications, or associated biologic effect, as well as the parallel study of subsets such as proteins with associated protein folds (structural proteomics) or binding sites (chemical proteomics). Beginning by defining the scope of the field as is relevant to spectroscopists, the book then briefly reviews current commonly used spectroscopic methods. It covers separation techniques that typically precede ESI studies as well as MALDI MS/MS based protein identification. SELDI is also presented as a tool that combines separation techniques with MS analysis on the same chip. The book presents studies of protein-protein and protein-ligand interactions using NIR fluorescence, NMR, MS, and SPR. Recent developments in ICAT labeling strategies are addressed along with a discussion of metabolomics. A description of advances in structural proteomics using NMR, x-ray crystallography, and EPR precedes a final summary of current technology and future prospects of the science.

Analyzing the current state of the science and the future evolution of the field, Spectral Techniques in Proteomics applies a systems-based approach to studying the function and mechanism of proteins.

Daniel S. Sem