4.5 Article

Investigating Phosphorylation Patterns of the Ion Channel TRPM7 Using Multiple Extraction and Enrichment Techniques Reveals New Phosphosites

Journal

Publisher

SPRINGER
DOI: 10.1007/s13361-019-02223-5

Keywords

TRPM7; SCAD; S-Trap; Phosphorylation; Post-translational modifications; Peptide enrichment; Phosphoproteomics; Membrane proteins

Funding

  1. Department of Chemistry, College of Liberal Arts and Sciences, University of Illinois at Chicago
  2. National Science Foundation [1655494]
  3. National Institutes of Health [NIH R56MH107387]
  4. Direct For Biological Sciences
  5. Division Of Integrative Organismal Systems [1655494] Funding Source: National Science Foundation

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The study of membrane proteins, and in particular ion channels, is crucial to understanding cellular function. Mass spectrometry-based approaches including bottom-up strategies to study membrane proteins have been successful yet still can remain challenging. In this study, we sought to evaluate the phosphorylation patterns of the ion channel TRPM7 which is involved in a range of critical physiological functions. To overcome extraction obstacles associated with analyzing membrane proteins, we incorporated the use of 5% SDS solubilization coupled with SCAD and S-Trap digestion methods to eliminate detergent interference in downstream LC-MS/MS analysis. We found that the SCAD method was more efficient, yielding 84% of the overall identified proteins; however, the variability was greater than the S-Trap method. Using both methods together with TiO2 and Fe-NTA phospho-enrichment protocols, we successfully observed the phosphorylation pattern of TRPM7 in a transfected cell line. An average of 226% of the TRPM7 amino acid sequence was observed. In addition to several previously reported phosphorylation sites, we identified six new phosphosites (S5, S233, S554, S824, T1265, and S1401), providing new targets for further functional analyses of TRPM7.

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