Pseudomonas aeruginosa EftM Is a Thermoregulated Methyltransferase

July 28, 2017

Title

Pseudomonas aeruginosa EftM Is a Thermoregulated Methyltransferase

Author

Joshua P. Owings, Emily G. Kuiper, Samantha M. Prezioso, Jeffrey Meisner, John J. Varga, Natalia Zelinskaya, Eric B. Dammer, Duc M. Duong, Nicholas T. Seyfried, Sebastián Albertí, Graeme L. Conn, Joanna B. Goldberg

Year

2015

Journal

The Journal of Biological Chemistry

Abstract

Pseudomonas aeruginosa is a Gram-negative opportunistic pathogen that trimethylates elongation factor-thermo-unstable (EF-Tu) on lysine 5. Lysine 5 methylation occurs in a temperature-dependent manner and is generally only seen when P. aeruginosa is grown at temperatures close to ambient (25 °C) but not at higher temperatures (37 °C). We have previously identified the gene, eftM (for EF-Tu-modifying enzyme), responsible for this modification and shown its activity to be associated with increased bacterial adhesion to and invasion of respiratory epithelial cells. Bioinformatic analyses predicted EftM to be a Class I S-adenosyl-L-methionine (SAM)-dependent methyltransferase. An in vitro methyltransferase assay was employed to show that, in the presence of SAM, EftM directly trimethylates EF-Tu. A natural variant of EftM, with a glycine to arginine substitution at position 50 in the predicted SAM-binding domain, lacks both SAM binding and enzyme activity. Mass spectrometry analysis of the in vitromethyltransferase reaction products revealed that EftM exclusively methylates at lysine 5 of EF-Tu in a distributive manner. Consistent with the in vivo temperature dependence of methylation of EF-Tu, preincubation of EftM at 37 °C abolished methyltransferase activity, whereas this activity was retained when EftM was preincubated at 25 °C. Irreversible protein unfolding at 37 °C was observed, and we propose that this instability is the molecular basis for the temperature dependence of EftM activity. Collectively, our results show that EftM is a thermolabile, SAM-dependent methyltransferase that directly trimethylates lysine 5 of EF-Tu in P. aeruginosa.

Instrument

J-810

Keywords

Circular dichroism, Secondary structure, Thermal stability, Thermodynamics, Biochemistry