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Phosphatidylethanolamine methyltransferase (PEMT) enzymes catalyze the covalent attachment of one or more methyl groups using S-adenosylmethionine (SAM) as the methyl group donor onto PE, monomethyl-PE or dimethyl-PE to give monomethyl-PE, dimethyl-PE and/or phosphatidylcholine (PC). These enzymes are almost ubiquitous in animal cells and fungi. They can also be found in some plants 1 and approximately 10% of bacteria, particularly those that interact with eukaryotes 2.
PEMTs are relevant to the biology of the cell not only by contributing to the production of PC, which is the main lipid class in animal cells, but also by fulfilling other important cellular functions. In mammals, PEMTs are mainly expressed in the liver where they are required for normal secretion of very low-density lipoprotein and they also contribute to diet-induced obesity 3, atherosclerosis 4, and insulin resistance 5. Additionally, mammalian PEMT are also expressed in adipocytes, although to lower levels, and participate in fat deposition 6,7. PEMT role in cancer development 8, apoptosis 9, and cell growth 10 have also been demonstrated. In bacteria, PEMT enzymes have been shown to be important for normal cell growth 2, virulence 2, and symbiosis with the host plant 11.
The goal and rationale of the present protocol is to measure PEMT activity from whole cell extracts without the need to purify the enzyme. Two distinct protocols have been developed to measure PEMT activity. The first and most common one measures the transfer of tritiated methyl group from radioactive SAM onto PE, which is the topic of this article. This protocol has been originally developed to measure PEMT activity from yeast 12 and mammalian cells (liver) 13 to gain an understanding of PC biosynthesis in these cells as well as to determine the specificity of these enzymes. Later, this technique has been applied to other cell types such as bacteria 2 (using a basic pH value for the assay though 15) and protozoan parasites 14. This technique can be used with whole cell extracts as well as purified enzyme, and can potentially be applied to any cell extract system. A non radioactive assay has also been designed that relies on the enzymatic quantification of S-adenosylhomocysteine, the transmethylation product of SAM 16. The latter assay may be more convenient as it does not involve radioactivity but it is only suitable for purified enzymes.