4.7 Article

High-Throughput Liquid-Liquid Fractionation of Multiple Protein Post-Translational Modifications

Journal

JOURNAL OF PROTEOME RESEARCH
Volume 8, Issue 2, Pages 907-916

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/pr800519g

Keywords

post-translational modification; nitration; phosphorylation; carbonylation

Funding

  1. National Institute on Aging [1P01 AG 021830-01]
  2. University of Texas Medical Branch Claude D. Pepper Older Americans Independence Center [P60AAG12583]
  3. Sealy Center on Aging
  4. University of Texas Medical Branch
  5. Clayton Foundation
  6. Beckman-Coulter, Inc

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Post-translational protein modifications have contributed significantly to the identification of macromolecular biomarkers of biological processes. We have modified a two-dimensional HPLC system (Beckman Coulter PF2D ProteomeLab) to create proteome maps of post-translational protein modifications. This system resolves complex protein mixtures by anion exchange chromatofocusing in the first dimension and hydrophobicity (reverse phase chromatography) in the second dimension. The simultaneous identification of multiple protein modifications, accomplished by incorporating a photo diode array (PDA) detector into the PF2D system, facilitates the simultaneous production of three-dimensional proteome maps and visualization of both unmodified and post-translationally modified (PTM) proteins at their signature wavelengths within the proteome. We describe procedures for the simultaneous resolution of proteome maps, the identification of proteins modified by nitration, carbonylation, and phosphorylation, and proteins with unique spectra such as the heme containing proteins.

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