Abstract

Transient receptor potential (TRP) ion channels play important roles in fundamental biological processes throughout the body of humans and mice. TRP channel dysfunction manifests in different disease states, therefore, these channels may represent promising therapeutic targets in treating these conditions. Many TRP channels are expressed in several organs suggesting multiple functions and making it challenging to untangle the systemic pathophysiology of TRP dysfunction. Detailed characterization of the expression pattern of the individual TRP channels throughout the organism is thus essential to interpret data such as those derived from systemic phenotyping of global TRP knockout mice. Murine TRP channel reporter strains enable reliable labeling of TRP expression with a fluorescent marker. Here we present an optimized method to visualize primary TRP-expressing cells with single cell resolution throughout the entire organism. In parallel, we methodically combine systemic gene expression profiling with an adjusted mass spectrometry protocol to document acute protein levels in selected organs of interest. The TRP protein expression data are then correlated with the GFP reporter expression data. The combined methodological approach presented here can be adopted to generate expression data for other genes of interest and reporter mice.•We present an optimized method to systemically characterize gene expression in fluorescent reporter mouse strains with a single cell resolution.•We methodically combine systemic gene expression profiling with an adjusted mass spectrometry protocol to document acute protein levels in selected organs of interest in mice.

Highlights

  • Combining mass spectrometry and genetic labeling in mice to report Transient receptor potential (TRP) channel expression Philipp Wartenberg a, Femke Lux a, Kai Busch a, Claudia Fecher-Trost a, Amanda Wyatt a, Veit Flockerzi a, Gabriela Krasteva-Christ b, Ulrich Boehm a, Petra Weissgerber a,∗

  • Many TRP channels are expressed in several organs suggesting multiple functions and making it challenging to untangle the systemic pathophysiology of TRP dysfunction

  • The TRP protein expression data are correlated with the GFP reporter expression data

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Summary

Method Article

Combining mass spectrometry and genetic labeling in mice to report TRP channel expression Philipp Wartenberg a, Femke Lux a, Kai Busch a, Claudia Fecher-Trost a, Amanda Wyatt a, Veit Flockerzi a, Gabriela Krasteva-Christ b, Ulrich Boehm a, Petra Weissgerber a,∗. We methodically combine systemic gene expression profiling with an adjusted mass spectrometry protocol to document acute protein levels in selected organs of interest. We present an optimized method to systemically characterize gene expression in fluorescent reporter mouse strains with a single cell resolution. We methodically combine systemic gene expression profiling with an adjusted mass spectrometry protocol to document acute protein levels in selected organs of interest in mice. Method name: Combination of immunoprecipitation/mass spectrometry with genetic labeling in mice Keywords: TRP expression, Genetic labeling, Mass spectrometry, Immunoprecipitation Article history: Received 18 October 2021; Accepted 9 December 2021; Available online 14 December 2021.

Method details
Working solution of our antibodies
Match peptides and fragments with the following parameters
Declaration of Competing Interest
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