The YhhN protein of Legionella pneumophila is a Lysoplasmalogenase. 2015

Marianne S Jurkowitz, and Aalapi Patel, and Lai-Chu Wu, and Annalise Krautwater, and Douglas R Pfeiffer, and Charles E Bell
Department of Molecular and Cellular Biochemistry, The Ohio State University, Columbus, OH 43210, USA. Electronic address: jurkowitz.1@osu.edu.

Lysoplasmalogenase catalyzes hydrolytic cleavage of the vinyl-ether bond of lysoplasmalogen to yield fatty aldehyde and glycerophospho-ethanolamine or glycerophospho-choline. We recently purified lysoplasmalogenase from rat liver microsomes and identified the protein as TMEM86B, an integral membrane protein that is a member of the YhhN family found in numerous species of eukaryotes and bacteria. To test the hypothesis that bacterial YhhN proteins also function as lysoplasmalogenase enzymes, we cloned the Lpg1991 gene of Legionella pneumophila, which encodes a 216 amino acid YhhN protein (LpYhhN), and expressed it in Escherichia coli as a C-terminal-GFP-His8-fusion. Membranes were solubilized and the fusion protein was purified by nickel-affinity chromatography, cleaved with Tobacco Etch Virus protease, and subjected to a reverse nickel column to purify the un-tagged LpYhhN. Both the fusion protein and un-tagged LpYhhN exhibit robust lysoplasmalogenase activity, cleaving the vinyl-ether bond of lysoplasmalogen with a Vmax of 12 µmol/min/mg protein and a Km of 45 μM. LpYhhN has no activity on diradyl plasmalogen, 1-alkenyl-glycerol, and monoacylglycerophospho-ethanolamine or monoacylglycerophospho-choline; the pH optimum is 6.5-7.0. These properties are very similar to mammalian TMEM86B. Sequence analysis suggests that YhhN proteins contain eight transmembrane helices, an N-in/C-in topology, and about 5 highly conserved amino acid residues that may form an active site. This work is the first to demonstrate a function for a bacterial YhhN protein, as a vinyl ether bond hydrolase specific for lysoplasmalogen. Since L. pneumophila does not contain endogenous plasmalogens, we hypothesize that LpYhhN may serve to protect the bacterium from lysis by lysoplasmalogen derived from plasmalogens of the host.

UI MeSH Term Description Entries
D007700 Kinetics The rate dynamics in chemical or physical systems.
D008246 Lysophospholipids Derivatives of PHOSPHATIDIC ACIDS that lack one of its fatty acyl chains due to its hydrolytic removal. Lysophosphatidic Acids,Lysophospholipid,Acids, Lysophosphatidic
D008969 Molecular Sequence Data Descriptions of specific amino acid, carbohydrate, or nucleotide sequences which have appeared in the published literature and/or are deposited in and maintained by databanks such as GENBANK, European Molecular Biology Laboratory (EMBL), National Biomedical Research Foundation (NBRF), or other sequence repositories. Sequence Data, Molecular,Molecular Sequencing Data,Data, Molecular Sequence,Data, Molecular Sequencing,Sequencing Data, Molecular
D010450 Endopeptidases A subclass of PEPTIDE HYDROLASES that catalyze the internal cleavage of PEPTIDES or PROTEINS. Endopeptidase,Peptide Peptidohydrolases
D011993 Recombinant Fusion Proteins Recombinant proteins produced by the GENETIC TRANSLATION of fused genes formed by the combination of NUCLEIC ACID REGULATORY SEQUENCES of one or more genes with the protein coding sequences of one or more genes. Fusion Proteins, Recombinant,Recombinant Chimeric Protein,Recombinant Fusion Protein,Recombinant Hybrid Protein,Chimeric Proteins, Recombinant,Hybrid Proteins, Recombinant,Recombinant Chimeric Proteins,Recombinant Hybrid Proteins,Chimeric Protein, Recombinant,Fusion Protein, Recombinant,Hybrid Protein, Recombinant,Protein, Recombinant Chimeric,Protein, Recombinant Fusion,Protein, Recombinant Hybrid,Proteins, Recombinant Chimeric,Proteins, Recombinant Fusion,Proteins, Recombinant Hybrid
D002846 Chromatography, Affinity A chromatographic technique that utilizes the ability of biological molecules, often ANTIBODIES, to bind to certain ligands specifically and reversibly. It is used in protein biochemistry. (McGraw-Hill Dictionary of Scientific and Technical Terms, 4th ed) Chromatography, Bioaffinity,Immunochromatography,Affinity Chromatography,Bioaffinity Chromatography
D003001 Cloning, Molecular The insertion of recombinant DNA molecules from prokaryotic and/or eukaryotic sources into a replicating vehicle, such as a plasmid or virus vector, and the introduction of the resultant hybrid molecules into recipient cells without altering the viability of those cells. Molecular Cloning
D004926 Escherichia coli A species of gram-negative, facultatively anaerobic, rod-shaped bacteria (GRAM-NEGATIVE FACULTATIVELY ANAEROBIC RODS) commonly found in the lower part of the intestine of warm-blooded animals. It is usually nonpathogenic, but some strains are known to produce DIARRHEA and pyogenic infections. Pathogenic strains (virotypes) are classified by their specific pathogenic mechanisms such as toxins (ENTEROTOXIGENIC ESCHERICHIA COLI), etc. Alkalescens-Dispar Group,Bacillus coli,Bacterium coli,Bacterium coli commune,Diffusely Adherent Escherichia coli,E coli,EAggEC,Enteroaggregative Escherichia coli,Enterococcus coli,Diffusely Adherent E. coli,Enteroaggregative E. coli,Enteroinvasive E. coli,Enteroinvasive Escherichia coli
D006863 Hydrogen-Ion Concentration The normality of a solution with respect to HYDROGEN ions; H+. It is related to acidity measurements in most cases by pH pH,Concentration, Hydrogen-Ion,Concentrations, Hydrogen-Ion,Hydrogen Ion Concentration,Hydrogen-Ion Concentrations
D006867 Hydrolases Any member of the class of enzymes that catalyze the cleavage of the substrate and the addition of water to the resulting molecules, e.g., ESTERASES, glycosidases (GLYCOSIDE HYDROLASES), lipases, NUCLEOTIDASES, peptidases (PEPTIDE HYDROLASES), and phosphatases (PHOSPHORIC MONOESTER HYDROLASES). EC 3. Hydrolase

Related Publications

Marianne S Jurkowitz, and Aalapi Patel, and Lai-Chu Wu, and Annalise Krautwater, and Douglas R Pfeiffer, and Charles E Bell
August 2018, The Journal of biological chemistry,
Marianne S Jurkowitz, and Aalapi Patel, and Lai-Chu Wu, and Annalise Krautwater, and Douglas R Pfeiffer, and Charles E Bell
September 2006, Nature cell biology,
Marianne S Jurkowitz, and Aalapi Patel, and Lai-Chu Wu, and Annalise Krautwater, and Douglas R Pfeiffer, and Charles E Bell
September 2019, Proceedings of the National Academy of Sciences of the United States of America,
Marianne S Jurkowitz, and Aalapi Patel, and Lai-Chu Wu, and Annalise Krautwater, and Douglas R Pfeiffer, and Charles E Bell
November 1999, Nihon rinsho. Japanese journal of clinical medicine,
Marianne S Jurkowitz, and Aalapi Patel, and Lai-Chu Wu, and Annalise Krautwater, and Douglas R Pfeiffer, and Charles E Bell
June 2008, Revista chilena de infectologia : organo oficial de la Sociedad Chilena de Infectologia,
Marianne S Jurkowitz, and Aalapi Patel, and Lai-Chu Wu, and Annalise Krautwater, and Douglas R Pfeiffer, and Charles E Bell
September 2021, Trends in microbiology,
Marianne S Jurkowitz, and Aalapi Patel, and Lai-Chu Wu, and Annalise Krautwater, and Douglas R Pfeiffer, and Charles E Bell
January 1988, The Annals of occupational hygiene,
Marianne S Jurkowitz, and Aalapi Patel, and Lai-Chu Wu, and Annalise Krautwater, and Douglas R Pfeiffer, and Charles E Bell
April 2016, Scientific reports,
Marianne S Jurkowitz, and Aalapi Patel, and Lai-Chu Wu, and Annalise Krautwater, and Douglas R Pfeiffer, and Charles E Bell
August 1989, Nucleic acids research,
Marianne S Jurkowitz, and Aalapi Patel, and Lai-Chu Wu, and Annalise Krautwater, and Douglas R Pfeiffer, and Charles E Bell
October 2006, Biochemistry,
Copied contents to your clipboard!