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Protein Mass Spectrometry and Proteomics: Techniques and Applications
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Related lectures (32)
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Mass Spectrometry: Detectors and Techniques
Explores mass spectrometry detectors, MS/MS, and various techniques for ion detection and analysis.
Protein Mass Spectrometry and Proteomics: Search Engines and Database Algorithms
Explores protein mass spectrometry, search engines, and quantification methods in proteomics.
SERF-related proteins functions in amyloid acceleration and G-quadruplex binding
Explores SERF-related proteins' functions in amyloid acceleration and G-quadruplex binding, shedding light on their complex mechanisms.
Proteomics and Mass Spectrometry
Covers protein mass spectrometry, gel electrophoresis, liquid chromatography, and tandem mass spectrometry for protein identification.
Protein Co-evolution Analysis
Delves into protein co-evolution analysis, covering discoveries, residue contacts, and direct coupling analysis.
Protein Design: Structure and Function
Covers protein design fundamentals, including secondary structures, amino acid propensity, loops, and computational methods.
Chromatography: Protein Purification
Explains chromatography principles for protein purification, covering peak broadening causes, band broadening components, and common stationary phases.
Computational Protein Design: Principles and Challenges
Covers the principles and challenges of computational protein design in bioengineering.
Proteomics Analysis: Enzymes, Workflows, and Applications
Explores the analysis of peptides in proteomics, covering enzymes, workflows, and applications.
Mass Spectrometry: Analyzing Peptides with Tandem MS
Covers mass spectrometry and tandem MS/MS techniques for peptide analysis, focusing on ionization, fragmentation, and sequence identification.