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Mass Spectrometry: Complex Analysis01:21

Mass Spectrometry: Complex Analysis

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Mass spectrometry is an important technique for the identification of pure compounds. However, it has some limitations for the analysis of complex mixtures, often due to excessive fragmentation making the spectrum too complicated to decipher. Mass spectrometry can be combined with suitable separation methods in sequence, forming hyphenated methods, which are useful in the analysis of complex mixtures.
GC–MS is a powerful hyphenated method commonly used in forensics and environmental...
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Proteomics01:33

Proteomics

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A proteome is the entire set of proteins that a cell type produces. We can study proteomes using the knowledge of genomes because genes code for mRNAs, and the mRNAs encode proteins. Although mRNA analysis is a step in the right direction, not all mRNAs are translated into proteins.
Proteomics is the study of proteomes' function. It involves the large-scale systematic study of the proteome to denote the protein complement expressed by a genome. Scientist Mark Wilkins coined the term...
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MALDI-TOF Mass Spectrometry01:19

MALDI-TOF Mass Spectrometry

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Mass spectrometry is a powerful characterization technique that can identify and separate a wide variety of compounds ranging from chemical to biological entities, based on their mass-to-charge ratio (m/z). The instruments that allow this detection, known as mass spectrometers, have three components: an ion source, a mass analyzer, and a detector. These spectrometers differ based on the nature of their ion source and analyzers.Matrix-assisted laser desorption ionization (MALDI) is a commonly...
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Peptide Identification Using Tandem Mass Spectrometry01:33

Peptide Identification Using Tandem Mass Spectrometry

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Tandem mass spectrometry, also known as MS/MS or MS2, is an analytical technique that employs two mass analyzers. Essentially it is a series of mass spectrometers that helps isolate a particular biomolecule and then helps study its chemical properties.
This technique helps gather information regarding the protein from which the peptide was obtained and to study the peptides’ amino acid sequence. Identifying peptides from a complex mixture is an important component of the growing field of...
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Related Experiment Video

Updated: Apr 22, 2026

Deep Proteome Profiling by Isobaric Labeling, Extensive Liquid Chromatography, Mass Spectrometry, and Software-assisted Quantification
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Exploring the glycoproteomics landscape with advanced MS technologies.

Iulia M Lazar1, Jingren Deng, Fumio Ikenishi

  • 1Department of Biological Sciences, Virginia Tech, Blacksburg, VA, USA.

Electrophoresis
|October 15, 2014
PubMed
Summary

Glycoproteomics advances reveal glycosylation

Keywords:
BioinformaticsBiomedicalGlycoproteomicsMass spectrometryMicrofluidics

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Area of Science:

  • Biochemistry
  • Molecular Biology
  • Analytical Chemistry

Background:

  • Glycosylation is crucial for protein function, impacting enzymes, hormones, and cell communication.
  • The glycome's complexity necessitates advanced analytical techniques for detailed exploration.
  • Glycoproteins play vital roles in cellular processes, including proliferation and recognition.

Purpose of the Study:

  • To review major developments in glycoproteomics.
  • To highlight recent advancements (2012-2014) in glycoproteomics technologies.
  • To focus on capillary separations and mass spectrometry (MS) in glycoproteomics.

Main Methods:

  • Spectroscopy
  • Mass Spectrometry (MS)
  • Capillary Electrophoresis (CE)
  • Microfluidics
  • Microarray technologies

Main Results:

  • Technological progress enables detailed exploration of glycan structure and heterogeneity.
  • Combined approaches using separation and MS detection are key to glycoproteomics.
  • Significant advancements have been made in analyzing the complex glycome.

Conclusions:

  • Glycoproteomics is essential for understanding protein function and cellular processes.
  • Recent advancements in analytical instrumentation have significantly improved glycoproteomic analysis.
  • Capillary separations coupled with MS detection offer powerful tools for glycoproteomic research.