Spatial Protein Expression

Spatial protein expression describes the distribution and abundance of proteins across cells, tissues, or subcellular regions, adding location to conventional protein measurements. It works by preserving tissue architecture while detecting target proteins through methods such as antibody-based imaging, multiplexed staining, or spatially resolved mass spectrometry, allowing molecular signals to be mapped to precise anatomical coordinates. In medicine, these maps reveal cellular heterogeneity, tissue organization, disease-associated pathways, and interactions within the tumor or immune microenvironment, supporting biomarker discovery, diagnosis, patient stratification, and treatment-response assessment. As spatial methods become more quantitative and multiplexed, they can connect molecular changes with pathology and improve understanding of disease mechanisms.

Spatial Protein Expression - Related Videos

Research

JoVE Journal - Developmental Biology
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Temporal Ordering of Dynamic Expression Data from Detailed Spatial Expression Maps

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2017

The segmentation clock drives oscillatory gene expression across the pre-somitic mesoderm (PSM). Dynamic Notch activity is key to this process. We use imaging and computational analyses to extract temporal dynamics from spatial expression data to demonstrate that Delta ligand and Notch receptor expression oscillate in the vertebrate PSM.

Research

JoVE Journal - Biology
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Green Fluorescent Protein-based Expression Screening of Membrane Proteins in Escherichia coli

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Cited by 34 •

2015

A streamlined approach to screening for the expression of recombinant membrane proteins in Escherichia coli based on fusion to green fluorescent protein is presented.

Research

JoVE Journal - Biology

Imaging Spatial Reorganization of a MAPK Signaling Pathway Using the Tobacco Transient Expression System

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Cited by 4 •

2016

At the subcellular level, signaling events are dynamically modulated by developmental and environmental cues. Here we describe a protocol that employs the tobacco transient expression system to monitor dynamic protein-protein interaction and to disclose spatial organization of signal transduction in plant cells.

Spatial Profiling of Protein and RNA Expression in Tissue: An Approach to Fine-Tune Virtual Microdissection

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Cited by 2 •

2022

Here, we describe a protocol for fine-tuning regions of interest (ROIs) for Spatial Omics technologies to better characterize the tumor microenvironment and identify specific cell populations. For proteomics assays, automated customized protocols can guide ROI selection, while transcriptomics assays can be fine-tuned utilizing ROIs as small as 50 µm.

Staining of Proteins in Gels with Coomassie G-250 without Organic Solvent and Acetic Acid

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Cited by 94 •

2009

A short protocol for protein staining with Coomassie Brilliant Blue (CBB) G-250 in polyacrylamide gels is described without using organic solvents or acetic acid as in the classical staining procedures with CBB.

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