Spatially targeted proteomics analyzes the proteome of specific cell types and functional regions within tissue. While spatial context is often essential to understanding biological processes, interpreting sub-region-specific protein profiles can pose a challenge due to the high-dimensional nature of the data. Here, we develop a multivariate approach for rapid exploration of differential protein profiles acquired from distinct tissue regions and apply it to analyze a published spatially targeted proteomics data set collected from Staphylococcus aureus-infected murine kidney, 4 and 10 days postinfection. The data analysis process rapidly filters high-dimensional proteomic data to reveal relevant differentiating species among hundreds to thou...
Spatial molecular profiling of complex tissues is essential to investigate cellular function in phys...
Digital spatial profiling (DSP) is an emerging powerful technology for proteomics and transcriptomic...
Spatial proteomics combining microscopy-based cell phenotyping with ultrasensitive mass-spectrometry...
Quantitative mass-spectrometry-based spatial proteomics involves elaborate, expensive, and time-cons...
Biological tissues contain diverse cell subpopulations crucial to their function, and proteins are t...
Quantitative mass spectrometry based spatial proteomics involves elaborate, expensive and time consu...
Protein subcellular localization is tightly controlled and intimately linked to protein function in ...
Abstract The spatial organisation of cellular protein expression profiles within tissue determines c...
Spatial proteomic profiling of tissue sections provides in situ molecular analysis of proteins and p...
A major challenge in cell biology is to identify the subcellular distribution of proteins within cel...
Spatial proteomics is the systematic study of protein sub-cellular localisation. In this workflow, w...
<p>Organelle proteomics, or spatial proteomics, is the systematic study of protein sub-cellular loca...
Methods for profiling RNA and protein expression in a spatially resolved manner are rapidly evolving...
Microbial pathogens have evolved numerous mechanisms to hijack host’s systems, thus causing disease....
Mass spectrometry (MS)-based proteomics has become a powerful technology to quantify the entire comp...
Spatial molecular profiling of complex tissues is essential to investigate cellular function in phys...
Digital spatial profiling (DSP) is an emerging powerful technology for proteomics and transcriptomic...
Spatial proteomics combining microscopy-based cell phenotyping with ultrasensitive mass-spectrometry...
Quantitative mass-spectrometry-based spatial proteomics involves elaborate, expensive, and time-cons...
Biological tissues contain diverse cell subpopulations crucial to their function, and proteins are t...
Quantitative mass spectrometry based spatial proteomics involves elaborate, expensive and time consu...
Protein subcellular localization is tightly controlled and intimately linked to protein function in ...
Abstract The spatial organisation of cellular protein expression profiles within tissue determines c...
Spatial proteomic profiling of tissue sections provides in situ molecular analysis of proteins and p...
A major challenge in cell biology is to identify the subcellular distribution of proteins within cel...
Spatial proteomics is the systematic study of protein sub-cellular localisation. In this workflow, w...
<p>Organelle proteomics, or spatial proteomics, is the systematic study of protein sub-cellular loca...
Methods for profiling RNA and protein expression in a spatially resolved manner are rapidly evolving...
Microbial pathogens have evolved numerous mechanisms to hijack host’s systems, thus causing disease....
Mass spectrometry (MS)-based proteomics has become a powerful technology to quantify the entire comp...
Spatial molecular profiling of complex tissues is essential to investigate cellular function in phys...
Digital spatial profiling (DSP) is an emerging powerful technology for proteomics and transcriptomic...
Spatial proteomics combining microscopy-based cell phenotyping with ultrasensitive mass-spectrometry...