Methods for Reversing Protein Modification : Ubiquitin and Sumo-specific Proteases (Methods in Signal Transduction)

Methods for Reversing Protein Modification : Ubiquitin and Sumo-specific Proteases (Methods in Signal Transduction)

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  • 製本 Hardcover:ハードカバー版/ページ数 300 p.
  • 言語 ENG
  • 商品コード 9781138196544
  • DDC分類 612

Full Description


Protein posttranslational modification with peptide tags ubiquitin or small ubiquitin-like modifier (SUMO) orchestrate multiple cellular events to ensure normal physiology. These simple enzymatic activities maintain homeostasis of protein modification and normal cell function. This book addresses major proteases - ubiquitin and/or SUMO proteases - involved in posttranslational modification of proteins. Themes reviewed include the difficulty of assigning substrate specificity to the individual de-ubiquitylases (DUBs), selectivity for processing ubiquitin poly-chains, and defining substrate profiles for the different SUMO proteases.Key selling features:Assigns substrate specificity to enzymes that constitute the de-ubiquitylase (DUB) familyDescribes DUBs selectivity for processing select ubiquitin poly-chains Defines substrate profiles for the different small ubiquitin-like modifier (SUMO) proteases Explores enzymatic activity of individual Ubiquitin/SUMO proteases

Contents

Methods for Ubiquitin Proteases. Evaluating the Substrate Specificity of DUBs. Processing of Poly-Ubiquitin Chains and Impact on Cell Signaling. Studies on Posttranslational Modification of DUBs and Enzymatic activity. Allosteric Regulation of DUB Activity. Orchestrated Recruitment of Multiple DUBs for S-phase Progression. Natural Compounds for Inhibition of DUB Activity in Cancer Cells. Methods for SUMO Proteases. Strategies for Evaluating the Substrate Specificity of SENPs. A Study on Enzyme Kinetics of SENP. Defining the Function of DeSI Family Members. Evaluating SUMO Protease Activity at Adheren Junctions in C. elegans. SENP1-regulated NF kappa B Signal in Type-1 Diabetes Progression. Identifying Small Molecule Inhibitors for SENPs.

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