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Membrane Proteomics Service

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連絡先担当者 Mr. Prime

155 Federal Street, Suite 700, Boston, Massachusetts

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製品仕様

タイトルまたは説明

Membrane proteins are specialized proteins located on the cell membrane, playing a critical role in various biological processes such as material transport, signal transduction, energy conversion, and intercellular communication. Membrane proteomics studies the structure, function, interactions, and variations of membrane proteins across diverse biological processes. The hydrophobic lipid bilayer embedding these proteins makes traditional water-soluble protein separation and purification methods ineffective, leading to challenges in extracting and purifying membrane proteins. Furthermore, their structural diversity and complexity complicate identification and characterization. However, with advances in mass spectrometry, bioinformatics, and other technologies, these challenges are gradually being addressed.

MtoZ Biolabs employs Thermo Fisher's Orbitrap Exploris **0 mass spectrometer platform combined with Nano-LC chromatography to provide comprehensive subcellular proteomics analysis services, including qualitative and quantitative analysis of cellular, mitochondrial, and chloroplast membrane proteomes.

Analysis Workflow
1. Membrane Protein Isolation and Enrichment

After cell or tissue disruption, the cell membrane or subcellular structures are isolated by centrifugation and other methods, and membrane proteins are extracted for further purification.

2. Protein Digestion
Various proteases digest membrane proteins into smaller peptide fragments for subsequent mass spectrometry analysis.

3. Peptide Separation
The digested peptides undergo further purification via HPLC.

4. Mass Spectrometry Analysis
The purified peptides are analyzed using mass spectrometry, recording mass spectrometry data like peptide ion mass-to-charge ratios.

5. Mass Spectrometry Data Analysis
The collected mass spectrometry data are cross-referenced with protein databases to identify and quantify membrane proteins.

6. Bioinformatics Analysis
Comprehensive analysis of the protein data, including protein classification, functional prediction, pathway analysis, and subcellular localization.

Service Advantages
1. High-throughput, High-resolution Identification of Membrane Proteins, Including Low-abundance Membrane Proteins
2. Multi-dimensional, Multi-layered Technology to Study Membrane Proteins, Providing Comprehensive Membrane Proteome Data
3. Integrates with other Omics Technologies like Transcriptomics and Metabolomics to Explore Membrane Protein Functions and Mechanisms From a Systems Biology Perspective

Deliverables

In the technical report, MtoZ Biolabs will provide you a detailed technical information, including:
1. Experimental Procedures
2. Relevant Mass Spectrometry Parameters
3. Detailed Information on Membrane Proteomics Analysis
4. Mass Spectrometry Images
5. Raw Data


About Us
MtoZ Biolabs is an integrate contract research organization (CRO) providing advanced proteomics, metabolomics, bioinformatics, and biopharmaceutical analysis services to researchers in biochemistry, biotechnology, and biopharmaceutical fields. The name of MtoZ represents mass to charge ratio in mass spectrometry analysis, as most of our services are provided based on our well-established mass spectrometry platforms. Our services allow for the rapid and efficient development of research projects, including protein analysis, proteomics, and metabolomics programs.

MtoZ Biolabs is specialized in quantitative multiplexed proteomics and metabolomics applications through the establishment of state-of-the-art mass spectrometry platforms, coupled with high-performance liquid chromatography technology. We are committed to developing efficient, and effective tools for addressing core bioinformatics problems. With a continuing focus on quality, MtoZ Biolabs is well equipped to help you with your needs in proteomics, metabolomics, bioinformatics, and biopharmaceutical research. Our ultimate aim is to provide more rapid, high-throughput, and cost-effective analysis, with exceptional data quality and minimal sample.​

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