Click to add Text Sample Preparation for Mass Spectrometry Sermin Tetik, PhD Marmara University July 2015, New Orleans.

Slides:



Advertisements
Similar presentations
Genomes and Proteomes genome: complete set of genetic information in organism gene sequence contains recipe for making proteins (genotype) proteome: complete.
Advertisements

Antibodies Analytical Techniques Utilizing Antibodies: flow cytometry
Protein Quantitation II: Multiple Reaction Monitoring
The Proteomics Core at Wayne State University
Post-Translational Modifications: CrossTalk Robert Chalkley Chem 204.
In-depth Analysis of Protein Amino Acid Sequence and PTMs with High-resolution Mass Spectrometry Lian Yang 2 ; Baozhen Shan 1 ; Bin Ma 2 1 Bioinformatics.
Novel labeling technologies on proteins
Mass Spectrometry at The University of Louisville HSC
Metabolomics DNA RNA Protein Biochemicals (Metabolites) Genomics – 25,000 Genes Transcriptomics – 100,000 Transcripts Metabolomics – 2,800 Compounds Proteomics.
LCM and Proteomics Tissue heterogeneity: Farm  Haystack LCM: pure(r) cell populations Avoid potential expression artifacts a/w sorting Proteins: closer.
CEG Protein Analysis Workshop
Announcements: Proposal resubmissions are due 4/23. It is recommended that students set up a meeting to discuss modifications for the final step of the.
Previous Lecture: Regression and Correlation
HOW MASS SPECTROMETRY CAN IMPROVE YOUR RESEARCH
Proteomics Informatics (BMSC-GA 4437) Course Director David Fenyö Contact information
Proteomics Informatics Workshop Part III: Protein Quantitation
Fa 05CSE182 CSE182-L9 Mass Spectrometry Quantitation and other applications.
In God We Trust.
Center for Human Health and the Environment
GSAT501 - proteomics Name, home-town Students – previous lab experience –Lab you hope to end up in? Teachers – what is your current project.
Finish up array applications Move on to proteomics Protein microarrays.
Implementation of radiotracers use in methods for differential analysis of protein expression Mauro Fasano Centre of NeuroScience and DBSF University of.
Quantification of Membrane and Membrane- Bound Proteins in Normal and Malignant Breast Cancer Cells Isolated from the Same Patient with Primary Breast.
High throughput Protein Measurement Techniques Harin Kanani.
Genomics II: The Proteome Using high-throughput methods to identify proteins and to understand their function.
Software Project MassAnalyst Roeland Luitwieler Marnix Kammer April 24, 2006.
Multiple flavors of mass analyzers Single MS (peptide fingerprinting): Identifies m/z of peptide only Peptide id’d by comparison to database, of predicted.
Overview of Mass Spectrometry
Proteome and Gene Expression Analysis Chapter 15 & 16.
Proteomics Informatics (BMSC-GA 4437) Instructor David Fenyö Contact information
Salamanca, March 16th 2010 Participants: Laboratori de Proteomica-HUVH Servicio de Proteómica-CNB-CSIC Participants: Laboratori de Proteomica-HUVH Servicio.
Quantitative Proteomic Profiling by Mass Spectrometry Paolo Lecchi, Ph.D. Dept. of Pharmacology George Washington University Emerging Technologies in Protein.
What is proteomics? Richard Mbasu and Ben Richards.
CU-Boulder Central Analytical Lab Mass Spectrometry Core Facility JSCBB C1B90 Jeremy Balsbaugh & Thomas Lee.
Ho-Tak Lau, Hyong Won Suh, Martin Golkowski, and Shao-En Ong
Novel Proteomics Techniques
Goals in Proteomics Identify and quantify proteins in complex mixtures/complexes Identify global protein-protein interactions Define protein localizations.
Analysis of protein glycosylation by mass spectrometry Glycosylation, the attachment of sugar moieties to proteins, is a post-translational modification.
Richard Mbasu and Ben Richards
Mass Spectrometry makes it possible to measure protein/peptide masses (actually mass/charge ratio) with great accuracy Major uses Protein and peptide identification.
Mass spectrometry data enhancement software
The Syllabus. The Syllabus Safety First !!! Students will not be allowed into the lab without proper attire. Proper attire is designed for your protection.
Mass Spectrometry Vs. Immunoassay
2 Dimensional Gel Electrophoresis
Mass spectrometry-based proteomics
Thomas BOTZANOWSKI & Blandine CHAZARIN
Applying proteomic technology to clinical virology
MCB test 2 Review M. Alex Miranda 11/5/16.
Bioinformatics Solutions Inc.
V. Protein Chips 1. What is Protein Chips 2. How to Make Protein Chips
Proteomics Informatics David Fenyő
Microbiome: Metabolomics
Mapping Sites of O-GlcNAc Modification Using Affinity Tags for Serine and Threonine Post-translational Modifications Wells, Vosseller, Cole, Cronshaw,
Analytical Characteristics of Cleavable Isotope-Coded Affinity Tag-LC-Tandem Mass Spectrometry for Quantitative Proteomic Studies  Cecily P. Vaughn, David.
A perspective on proteomics in cell biology
The potential for proteomic definition of stem cell populations
The potential for proteomic definition of stem cell populations
A quantitative proteomics strategy to identify SUMO-conjugated proteins. A quantitative proteomics strategy to identify SUMO-conjugated proteins. HeLa.
Shotgun Proteomics in Neuroscience
What Determines the Specificity and Outcomes of Ubiquitin Signaling?
Methods for the Elucidation of Protein-Small Molecule Interactions
Microbiome: Metabolomics
Proteomics Informatics David Fenyő
Identification of Post Translational Modifications
Kuen-Pin Wu Institute of Information Science Academia Sinica
Sample preparation Protein and peptide separation techniques Karel Bezstarosti (Proteomics Center, Erasmus MC)
A Primer on Concepts and Applications of Proteomics in Neuroscience
Proteomic profiling of VCP substrates links VCP to K6‐linked ubiquitylation and c‐Myc function VCP inhibition increases the cellular levels of ubiquitylated.
Presentation transcript:

Click to add Text Sample Preparation for Mass Spectrometry Sermin Tetik, PhD Marmara University July 2015, New Orleans

Click to add Text An overwiev Introduction Sample Lysis and Protein Extraction Protein Enrichment Protein Quantitation and Staining Peptide Clean Up

Click to add Text Introduction Proper sample preparation for MS-based analysis is critical step in the proteomics workflow.

Click to add Text Introduction Mass spectrometry allows for the analysis of samples ranging in mass from ,000 daltons, in attomole through nanomole quantites.

Click to add Text Introduction The most successful proteomics Labs Sample Preparation InstrumentationSoftware

Click to add Text Proper Sample Preparation Means Better Results Proper Sample Preparation Means Better Results Two significant problems in MS analysis First, the ionization techniques used for large molecules work Second, mass spectrum from a complex mixture is very difficult to fully analyze

Click to add Text Proper Sample Preparation Means Better Results Proper Sample Preparation Means Better Results

Click to add Text Discovery vs. Targeted Proteomic Analysis Discovery vs. Targeted Proteomic Analysis A succsessful proteomics experiment requires integration of the right sample preparation, instrumentation and software.

Click to add Text Discovery vs. Targeted Proteomic Analysis Discovery vs. Targeted Proteomic Analysis Discovery proteomics maximizes protein identification. Targeted proteomics strategies limit the number of features.

Click to add Text Targeted Proteomic Analysis Targeted Proteomic Analysis Targeted proteomics experiments are quantified less than 100 proteins with very high precision, sensitivity, specifity and throughput....are used in Pharmaceutical and Diagnostic applications

Click to add Text Mass Specrometry Workflows Mass Specrometry Workflows

Click to add Text Mass Specrometry Workflow Mass Specrometry Workflow

Click to add Text Sample Lysis and Protein Extraction

Click to add Text All living organisms contain proteolytic enzymes for protein catabolism. Sample Lysis and Protein Extraction

Click to add Text Phosphatases are another class of enzymes that are liberated during cell lysis. 80% occur'ng on serine 20% occur'ng on threonine 1% on threonine residues Sample Lysis and Protein Extraction

Click to add Text Sample Lysis and Protein Extraction

Click to add Text Abundant Protein Depletion

Click to add Text Abundant Protein Depletion

Click to add Text Abundant Protein Depletion

Click to add Text Protein Enrichment Biochemical activity Post-translaional modification (PTM)

Click to add Text Protein Enrichment Shematic summary of a standard immunoprecipitation assay

Click to add Text Protein Enrichment Recent advances in MS technology, in combination with phosphoprotein enrichment using immobilized metal affinity chromatography, have resulted in greater solution of the phosphoproteome.

Click to add Text Active Site Protein Labeling and Enrichment Western blot and MS workflows for targeted capture and analysis of enzymes

Click to add Text Protein Clean Up DialysisDesaltingConcentrating Salts or detergents

Click to add Text Protein Clean Up

Click to add Text Protein Quantitation and Staining In-gel digestion SDS-PAGEextracting

Click to add Text Protein Quantitation and Staining

Click to add Text Protein Quantitation and Staining

Click to add Text Protein Digestion

Click to add Text Protein Digestion

Click to add Text Protein Digestion

Click to add Text Protein Digestion

Click to add Text Protein Digestion

Click to add Text Low-abundant Proteins Post Translationally Modified Peptides 1. Enrichment 2. Clean up Peptide Enrichment

Click to add Text Peptide Enrichment

Click to add Text Peptide Enrichment

Click to add Text Peptide Enrichment

Click to add Text Peptide clean up C18 spin Column C4 column Tips

Click to add Text Peptide clean up

Click to add Text Thank You