<p>1. Protein Cysteinyl-S-Nitrosylation: Analysis and Quantification<br>2. Quantitative Proteomics of the E. coli Membranome<br>3. Comparative Analysis and Validation of Different Steps in Glycomics Studies<br>4. Analysis of Translocation-Competent Secretory Proteins by HDX-MS<br>5. Site-Specific Quantification of Lysine Acetylation Using Isotopic Labeling<br>6. Posttranslational Modifications and Plant–Environment Interaction<br>7. Identification of Posttranslational Modifications of Endogenous Chromatin Proteins From Testicular Cells by Mass Spectrometry<br>8. Quantitative Analysis of Yeast Checkpoint Protein Kinase Activity by Combined Mass Spectrometry Enzyme Assays<br>9. Retrieving Quantitative Information of Histone PTMs by Mass Spectrometry<br>10. Evaluating Exosome Protein Content Changes Induced by Virus Activity Using SILAC Labeling and LC-MS/MS<br>11. Exoproteomics of Pathogens: Analysis of Toxins and Other Virulence Factors by Proteomics<br>12. Integrated and Quantitative Proteomics of Human Tumors<br>13 .Mass Spectrometry-Based Analysis for the Discovery and Validation of Potential Colorectal Cancer Stool Biomarkers<br>14. Mass Spectrometry-Based Methodology for Identification of Native Histone Variant Modifications From Mammalian Tissues and Solid Tumors<br>15. Drug Target Identification Using an iTRAQ-Based Quantitative Chemical Proteomics Approach—Based on a Target Profiling Study of Andrographolide<br>16. A Super-SILAC Strategy for the Accurate and Multiplexed Profiling of Histone Posttranslational Modifications<br>17. A Comparison of Two-Hybrid Approaches for Detecting Protein–Protein Interactions<br>18. Recent Achievements in Characterizing the Histone Code and Approaches to Integrating Epigenomics and Systems Biology<br>19. Rapid Proteomics to Prospect and Validate Novel Bacterial Metabolism Induced by Environmental Burden<br>20. Quantitation of Human Metallothionein Isoforms in Cells, Tissues, and Cerebrospinal Fluid by Mass Spectrometry<br>21. A Cautionary Tale on the Inclusion of Variable Posttranslational Modifications in Database-Dependent Searches of Mass Spectrometry Data<br>22. Kinase Assay-Linked Phosphoproteomics: Discovery of Direct Kinase Substrates</p>