Integrated Methods in Protein Biochemistry: Part C

Gebonden Engels 2023 9780443185922
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Samenvatting

Integrated Methods in Protein Biochemistry: Part C, Volume 679 in the Methods in Enzymology series, highlights new advances in the field with this new volume presenting interesting chapters on a variety of topics, including NanoBiT-based methods to monitor the activation and modulation of RTKs, The interplay of G-protein βγ subunit and PLC-β enzyme in PIP2 hydrolysis and downstream signaling, Biochemical Analysis of Protein-Protein Interfaces underlying the regulation of Bacterial Secretion Systems, Probing the structure and function of N-acetylmannosamine-6-phosphate 2-epimerase, Spectroscopic analysis of cysteine dioxygenase: a mammalian thiol-dioxygenase, DeGlyPHER: MS-based analysis of viral spike N-glycoforms, and more.

Other sections cover Covalent protein painting: MS-based protein footprinting, Characterization of GPCR signaling complexes using negative-staining electron microscopy, Probing protein misfolding and dissociation with free electron laser, Optimized protocol for the characterization of Cas12a activities, Proximity proteomics for the identification and characterization of extracellular vesicles, Functional characterization of lytic polysaccharide monooxygenases (LPMOs), Characterization of RRE domain in RiPP biosynthesis, The Preparation of Recombinant Arginyltransferase 1 (ATE1) for Structural and Biophyiscal Characterizations, Testing anti-cancer drugs with Holographic Incoherent-light-source Quantitative Phase Imaging, and more.

Specificaties

ISBN13:9780443185922
Taal:Engels
Bindwijze:Gebonden

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Inhoudsopgave

1. NanoBiT-based methods to monitor the activation and modulation of RTKs <br>2. The interplay of G-protein βγ subunit and PLC-β enzyme in PIP2 hydrolysis and downstream signaling <br>3. Biochemical Analysis of Protein-Protein Interfaces underlying the regulation of Bacterial Secretion Systems <br>4. Probing the structure and function of N-acetylmannosamine-6-phosphate 2-epimerase <br>5. Spectroscopic analysis of cysteine dioxygenase: a mammalian thiol-dioxygenase <br>6. DeGlyPHER: MS-based analysis of viral spike N-glycoforms <br>7. Covalent protein painting: MS-based protein footprinting <br>8. Characterization of GPCR signaling complexes using negative-staining electron microscopy <br>9. Probing protein misfolding and dissociation with free electron laser <br>10. Optimized protocol for the characterization of Cas12a activities <br>11. Proximity proteomics for the identification and characterization of extracellular vesicles <br>12. Functional characterization of lytic polysaccharide monooxygenases (LPMOs) <br>13. Characterization of RRE domain in RiPP biosynthesis <br>14. The Preparation of Recombinant Arginyltransferase 1 (ATE1) for Structural and Biophyiscal Characterizations <br>15. Testing anti-cancer drugs with Holographic Incoherent-light-source Quantitative Phase Imaging <br>16. Gel-based sample preparation methods for top-down native/cross-linking mass spectrometry <br>17. Identification and characterization of natural products and their interacts with anti-mycobacterial drug target proteins <br>18. Quantitative cysteinome profiling with DIA-ABPP <br>19. High-throughput screening and evolution of carbohydrate-active enzymes <br>20. Regulation of enzymes with light using unnatural amino acids <br>21. An optimized protocol for modular cloning to rapidly assemble expression vectors for MS-based orthogonal interactomics studies <br>22. Nucleotide-linked resins to identify new nucleotide-binding proteins using proteomics <br>23. Phospho-proteomic analysis of immune cells expressing chimeric antigen receptors <br>24. Novel strategies for targeting ubiquitin conjugation machinery using synthetic molecules <br>25. Reconstitution of the MLL1 complex and probing methyltransferase activity <br>26. Probing cellular aspects of endocytosis and phagocytosis with super-resolution microscopy <br>27. Structural and functional analysis of mono-copper enzymes from fungal species <br>28. Structure, function and regulation of deubiquitinases and RNA-modifying proteins. <br>29. Electrophysiology of ion-transporting rhodopsins <br>30. Measuring protein post-translational modifications using the protein semi-synthesis <br>31. Assay design and analysis of human Uracil DNA Glycosylase (UNG2) <br>32. Structure and function of T-Cell Protein Tyrosine Phosphatase (TCPTP) <br>33. Gel-based sample preparation methods for top-down/native/cross-linking mass spectrometry <br>34. Global substrate profiling of post-translational modifying enzymes <br>35. Methods for measuring kinetic isotope effects on the hydroxylation of a peptide

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        Integrated Methods in Protein Biochemistry: Part C