Proteomic Characterization

Proteomic characterization is the systematic identification and measurement of proteins in a biological sample, providing a molecular view of cellular structure and function. In neuroscience, researchers typically extract proteins from brain tissue or neural cells, digest them into peptides, separate the peptides by liquid chromatography, and analyze their mass-to-charge ratios by mass spectrometry; computational matching of peptide spectra then supports protein identification and quantification. This approach reveals changes in synaptic proteins, signaling pathways, and cellular responses across development, neural activity, or disease. It can also help identify candidate biomarkers and clarify molecular mechanisms underlying neurological disorders.

Proteomic Characterization - Related Videos

Research

JoVE Journal - Biochemistry

LERLIC-MS/MS for In-depth Characterization and Quantification of Glutamine and Asparagine Deamidation in Shotgun Proteomics

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Cited by 6 •

2017

Here we present a step-by-step protocol of the long-length electrostatic repulsion-hydrophilic interaction chromatography-tandem mass spectrometry (LERLIC-MS/MS) method. This is a novel methodology that enables for the first time quantification and characterization of the glutamine and asparagine deamidation isoforms by shotgun proteomics.

Research

JoVE Journal - Medicine
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Skeletal Muscle Gender Dimorphism from Proteomics

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Cited by 4 •

2011

A straight-forward set of methods to isolate and determine the identity of the most abundant proteins expressed in skeletal muscle. About 800 spots are discerned on a two-dimensional gel from 10 mg muscle; this allows for the determination of gender-specific protein expression. These methods will give equivalent results in most tissues.

Research

JoVE Journal - Biology
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Proteomic Sample Preparation from Formalin Fixed and Paraffin Embedded Tissue

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Cited by 50 •

2013

Archival formalin fixed and paraffin embedded (FFPE) clinical samples are valuable material for investigation of diseases. Here we demonstrate a sample preparation workflow allowing in-depth proteomic analysis of microdissected FFPE tissue.

Bottom-up and Shotgun Proteomics to Identify a Comprehensive Cochlear Proteome

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Cited by 6 •

2014

Proteome analysis of the cochlear sensory epithelium can be challenging due to its small size and because membrane proteins are difficult to isolate and identify. Both membrane and soluble proteins can be identified by combining multiple preparative methods and separation techniques along with high-resolution mass spectrometry.

Characterization of Neuronal Lysosome Interactome with Proximity Labeling Proteomics

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Cited by 6 •

2022

A neuronal lysosome proximity labeling proteomics protocol is described here to characterize the dynamic lysosomal microenvironment in human induced pluripotent stem cell-derived neurons. Lysosomal membrane proteins and proteins that interact with lysosomes (stably or transiently) can be accurately quantified in this method with excellent intracellular spatial resolution in live human neurons.

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