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Raymond Deshaies
Ubiquitin and Protein Degradation, Part B will cover biological biology, ubiquitin derivatives and ubiquitin-like proteins, deubiquitinating enzymes, proteomics as well as monitor for protein degradation. The chapters are highly methodological and focus on application of techniques.
* Second part of the Ubiquitin and Protein Degration series
* Topics include: E1 Enzymes, E2 Enzymes, E3 Enzymes, Proteasomes, and Isopeptidases
SECTION I. UBIQUITIN AND UBIQUITIN DERIVATIVES
SECTION II. UBIQUITIN-BINDING DOMAINS
SECTION III. METHODS TO STUDY THE PROTEASOME
SECTION IV. IDENTIFICATION AND CHARACTERIZATION OF SUBSTRATES AND UBIQUITIN LIGASES
SECTION V. GENOME- AND PROTEOME-WIDE APPROACHES TO IDENTIFY SUBSTRATES AND ENZYMES
SECTION VI. REAL TIME / NON-INVASIVE TECHNOLOGIES
SECTION VII. SMALL MOLECULE INHIBITORS
SECTION VIII. GENERALLY APPLICABLE TECHNOLOGIES
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Ronald Sass, Andrew Schmidt
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Klaus Friedrich, Alois Schlarb
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Jack Ganssle, Tammy Noergaard, Fred Eady, Lewin Edwards, David Katz, Rick Gentile, Ken Arnold, Kamal Hyder, Bob Perrin
Andrzej Chrzęszczyk, Jakub Chrzęszczyk
Waldo Cohn, Kivie Moldave
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Duncan Dowson, M. Priest, G. Dalmaz, A Lubrecht
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Gerhard Neumann, Cornelis Tuijn
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Matrix computations on Intel® Xeon Phi MAGMA MIC and MKL by example; Andrzej Chrzęszczyk, Jakub Chrzęszczyk
Raymond Deshaies