Kinomics Approaches and Applications 1st Edition by Heinz-Bernhard Kraatz, Sanela Martic – Ebook PDF Instant Download/Delivery: 978-3527337651, 3527337652
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Product details:
ISBN 10: 3527337652
ISBN 13: 978-3527337651
Author: Heinz-Bernhard Kraatz, Sanela Martic
Authored by the world’s leading kinase experts, this is a comprehensive introduction to current knowledge and practice within this emerging field.
Following an overview of the major players and pathways that define the kinome, the major part of this work is devoted to current strategies of kinome investigation and manipulation. As such, kinase engineering, peptide substrate engineering, co-substrate design and kinase inhibitor design are discussed in detail, and their potential applications in kinome analysis and kinome-based pharmacotherapy are shown.
The result is a toolbox for every kinase researcher: By addressing and comparing current approaches to the study of kinase action, both novice and established researchers will benefit from the practical knowledge contained in this invaluable reference.
Table of contents:
Part I: Protein Kinases and Cellular Signaling
Chapter 1. Global Overview of Protein Kinase Function
A brief history of the human kinome
Kinase groups: AGC, CaMK, CMGC, STE, Tyrosine, Casein, TK-like, RGC, Atypical
Roles in diseases: neurodegeneration, cancer
Research methods: mass spectrometry, FRET, in vitro/in vivo, CRISPR
Chapter 2. The “Real” Casein Kinase (Fam20C): Mother of the Phosphosecretome
Discovery and characteristics of Fam20C
Mechanism and regulation
Potential role in phosphate homeostasis and disease therapy
Chapter 3. Chemical Biology of Protein Kinases
Chemical genetic basis
Analog-sensitive kinases (AS kinases)
Substrate and inhibitor identification
Chapter 4. Bidirectional Crosstalk Between Kinases and Caspases in Apoptosis
Apoptotic pathways
Mechanisms of kinase–caspase crosstalk
Experimental strategies and implications
Chapter 5. Kinomics in Malaria Research
The Plasmodium kinome
Phosphoproteomics and phosphorylation pathways
Host kinase modulation and drug development
Part II: ATP Cosubstrate Design
Chapter 6. ATP Analogs in Protein Kinase Research
Modifications to base, sugar, and phosphate groups
Applications in kinase studies
Chapter 7. Electrochemical Detection of Kinase-Catalyzed Phosphorylation
Label-free and labeled methods
Use of electrochemical cosubstrates like ferrocene–ATP
Part III: Emerging Methods in Kinomics
Chapter 8. Phos-tag Technology in Kinomics
Principles and applications of Phos-tag
Phosphoprotein detection by blotting and electrophoresis
Chapter 9. Species- and Process-Specific Kinome Peptide Arrays
Design of species-specific peptide arrays
Applications in infectious diseases (human, livestock, bees)
Chapter 10. Emerging Methods for Studying Bacterial Histidine Kinase Activity and Inhibition
Two-component signal transduction systems
HK research techniques and drug targeting strategies
Chapter 11. High-Throughput Methods for Mapping Kinase Substrate Networks
Computational prediction
Mass spectrometry, analog-sensitive kinases, arrays, and solution-phase assays
Part IV: Kinase Inhibition
Chapter 12. Targeting STAT3: A Post-Kinase Strategy for Disease Therapy
STAT3 structure and signaling
Direct inhibition: peptides, small molecules, oligonucleotides
Chapter 13. Metal-Based Compounds as Kinase and Phosphatase Inhibitors in Drug Development
Geometric advantages of metal complexes
Applications in cancer therapy and phosphatase inhibition (e.g., vanadium)
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Tags: Heinz-Bernhard Kraatz, Sanela Martic, Kinomics Approaches


