AI Article Synopsis

  • Imaging human tissues for proteoforms has been challenging due to low specificity and limited coverage, but a new technique called proteoform imaging mass spectrometry (PiMS) significantly improves detection capabilities.
  • PiMS enhances the detection limit for proteoforms by four times compared to previous methods and allows for precise imaging at spatial resolutions of less than 80 micrometers.
  • By applying PiMS to human kidney samples, researchers identified 169 out of 400 target proteoforms, mapping their specific locations within various anatomical structures and demonstrating the potential for greater proteome analysis in tissue imaging.

Article Abstract

Imaging of proteoforms in human tissues is hindered by low molecular specificity and limited proteome coverage. Here, we introduce proteoform imaging mass spectrometry (PiMS), which increases the size limit for proteoform detection and identification by fourfold compared to reported methods and reveals tissue localization of proteoforms at <80-μm spatial resolution. PiMS advances proteoform imaging by combining ambient nanospray desorption electrospray ionization with ion detection using individual ion mass spectrometry. We demonstrate highly multiplexed proteoform imaging of human kidney, annotating 169 of 400 proteoforms of <70 kDa using top-down MS and a database lookup of ~1000 kidney candidate proteoforms, including dozens of key enzymes in primary metabolism. PiMS images reveal distinct spatial localizations of proteoforms to both anatomical structures and cellular neighborhoods in the vasculature, medulla, and cortex regions of the human kidney. The benefits of PiMS are poised to increase proteome coverage for label-free protein imaging of tissues.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9365283PMC
http://dx.doi.org/10.1126/sciadv.abp9929DOI Listing

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