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Proteomic Sample Preparation from Formalin Fixed and Paraffin Embedded Tissue
Published on: September 2, 2013
Formic Acid Enhanced Single-Pot Sample Preparation to Improve Identification Coverage of Membrane Proteome of Laser
Yingyun He1,2, Xinyu He1,3,2, Dan Liu1
1State Key Laboratory of Medical Proteomics, National Chromatographic R. & A. Center, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian116023, China.
None:
To interpret the heterogeneous multicellular microenvironment in biological tissues, cell type-resolved global proteome profiling has attracted great attention. Due to its high compatibility with mass spectrometry (MS), n-Dodecyl-d-maltoside (DDM) is commonly used for protein extraction from small tissue sections in spatially resolved proteomics workflows, improving low-input sample recovery without surfactant removal prior to MS analysis. However, extracting and solubilizing highly hydrophobic membrane proteins using mild, nondenaturing detergents remains challenging. Herein, we propose a formic acid (FA)-enhanced single-pot sample preparation (FAESP) method to improve protein solubility and extraction from tissue samples, enhancing membrane proteome identification coverage in laser capture microdissected tissue sections. Due to its high volatility, FA is rapidly removed by vacuum drying without cleaning steps. Combination with DDM ensures compatibility with subsequent digestion and LC-MS analysis. Compared with the FA-free DDM-based method, FAESP achieves a 38% increase in proteome coverage, with 40% of identified proteins annotated as membrane proteins. The FAESP workflow was applied to neuron type-specific proteome profiling in the medial habenula (MHb) of mouse brain, revealing regional specificity of synaptic proteins and solute carrier proteins in aging MHb subregions. These results demonstrate that FAESP provides a superior tool for discovering membrane protein candidates that distinguish neuronal types, facilitating biological and clinical applications.
