The acylation state of surface lipoproteins of mollicute Acholeplasma laidlawii. 2011

Marina V Serebryakova, and Irina A Demina, and Maria A Galyamina, and Ilya G Kondratov, and Valentina G Ladygina, and Vadim M Govorun
Institute of Physico-Chemical Medicine, Federal Medico-Biological Agency, Moscow 119992, Russia. mserebr@mail.ru

Acylation of the N-terminal Cys residue is an essential, ubiquitous, and uniquely bacterial posttranslational modification that allows anchoring of proteins to the lipid membrane. In gram-negative bacteria, acylation proceeds through three sequential steps requiring lipoprotein diacylglyceryltransferase, lipoprotein signal peptidase, and finally lipoprotein N-acyltransferase. The apparent lack of genes coding for recognizable homologs of lipoprotein N-acyltransferase in gram-positive bacteria and Mollicutes suggests that the final step of the protein acylation process may be absent in these organisms. In this work, we monitored the acylation state of eight major lipoproteins of the mollicute Acholeplasma laidlawii using a combination of standard two-dimensional gel electrophoresis protein separation, blotting to nitrocellulose membranes, and MALDI-MS identification of modified N-terminal tryptic peptides. We show that for each A. laidlawii lipoprotein studied a third fatty acid in an amide linkage on the N-terminal Cys residue is present, whereas diacylated species were not detected. The result thus proves that A. laidlawii encodes a lipoprotein N-acyltransferase activity. We hypothesize that N-acyltransferases encoded by genes non-homologous to N-acyltransferases of gram-negative bacteria are also present in other mollicutes and gram-positive bacteria.

UI MeSH Term Description Entries
D008074 Lipoproteins Lipid-protein complexes involved in the transportation and metabolism of lipids in the body. They are spherical particles consisting of a hydrophobic core of TRIGLYCERIDES and CHOLESTEROL ESTERS surrounded by a layer of hydrophilic free CHOLESTEROL; PHOSPHOLIPIDS; and APOLIPOPROTEINS. Lipoproteins are classified by their varying buoyant density and sizes. Circulating Lipoproteins,Lipoprotein,Lipoproteins, Circulating
D011499 Protein Processing, Post-Translational Any of various enzymatically catalyzed post-translational modifications of PEPTIDES or PROTEINS in the cell of origin. These modifications include carboxylation; HYDROXYLATION; ACETYLATION; PHOSPHORYLATION; METHYLATION; GLYCOSYLATION; ubiquitination; oxidation; proteolysis; and crosslinking and result in changes in molecular weight and electrophoretic motility. Amino Acid Modification, Post-Translational,Post-Translational Modification,Post-Translational Protein Modification,Posttranslational Modification,Protein Modification, Post-Translational,Amino Acid Modification, Posttranslational,Post-Translational Amino Acid Modification,Post-Translational Modifications,Post-Translational Protein Processing,Posttranslational Amino Acid Modification,Posttranslational Modifications,Posttranslational Protein Processing,Protein Processing, Post Translational,Protein Processing, Posttranslational,Amino Acid Modification, Post Translational,Modification, Post-Translational,Modification, Post-Translational Protein,Modification, Posttranslational,Modifications, Post-Translational,Modifications, Post-Translational Protein,Modifications, Posttranslational,Post Translational Amino Acid Modification,Post Translational Modification,Post Translational Modifications,Post Translational Protein Modification,Post Translational Protein Processing,Post-Translational Protein Modifications,Processing, Post-Translational Protein,Processing, Posttranslational Protein,Protein Modification, Post Translational,Protein Modifications, Post-Translational
D000107 Acetylation Formation of an acetyl derivative. (Stedman, 25th ed) Acetylations
D000128 Acholeplasma laidlawii An organism originally isolated from sewage, manure, humus, and soil, but recently found as a parasite in mammals and birds. Mycoplasma laidlawii
D000217 Acyltransferases Enzymes from the transferase class that catalyze the transfer of acyl groups from donor to acceptor, forming either esters or amides. (From Enzyme Nomenclature 1992) EC 2.3. Acyltransferase
D001426 Bacterial Proteins Proteins found in any species of bacterium. Bacterial Gene Products,Bacterial Gene Proteins,Gene Products, Bacterial,Bacterial Gene Product,Bacterial Gene Protein,Bacterial Protein,Gene Product, Bacterial,Gene Protein, Bacterial,Gene Proteins, Bacterial,Protein, Bacterial,Proteins, Bacterial

Related Publications

Marina V Serebryakova, and Irina A Demina, and Maria A Galyamina, and Ilya G Kondratov, and Valentina G Ladygina, and Vadim M Govorun
April 1986, European journal of biochemistry,
Marina V Serebryakova, and Irina A Demina, and Maria A Galyamina, and Ilya G Kondratov, and Valentina G Ladygina, and Vadim M Govorun
January 1991, Mikrobiologicheskii zhurnal,
Marina V Serebryakova, and Irina A Demina, and Maria A Galyamina, and Ilya G Kondratov, and Valentina G Ladygina, and Vadim M Govorun
December 1972, Photochemistry and photobiology,
Marina V Serebryakova, and Irina A Demina, and Maria A Galyamina, and Ilya G Kondratov, and Valentina G Ladygina, and Vadim M Govorun
October 1984, Lipids,
Marina V Serebryakova, and Irina A Demina, and Maria A Galyamina, and Ilya G Kondratov, and Valentina G Ladygina, and Vadim M Govorun
February 1992, European journal of biochemistry,
Marina V Serebryakova, and Irina A Demina, and Maria A Galyamina, and Ilya G Kondratov, and Valentina G Ladygina, and Vadim M Govorun
August 1981, European journal of cell biology,
Marina V Serebryakova, and Irina A Demina, and Maria A Galyamina, and Ilya G Kondratov, and Valentina G Ladygina, and Vadim M Govorun
April 1985, Journal of bacteriology,
Marina V Serebryakova, and Irina A Demina, and Maria A Galyamina, and Ilya G Kondratov, and Valentina G Ladygina, and Vadim M Govorun
January 1976, Mikrobiologiia,
Marina V Serebryakova, and Irina A Demina, and Maria A Galyamina, and Ilya G Kondratov, and Valentina G Ladygina, and Vadim M Govorun
March 1974, Canadian journal of microbiology,
Marina V Serebryakova, and Irina A Demina, and Maria A Galyamina, and Ilya G Kondratov, and Valentina G Ladygina, and Vadim M Govorun
June 1981, Journal of bacteriology,
Copied contents to your clipboard!