Alanylated lipoteichoic acid primer in Bacillus subtilis [version 2; referees: 2 approved]
نویسندگان
چکیده
Lipoteichoic acid is a major lipid-anchored polymer in Gram-positive bacteria such as . This polymer typically consists of repeating Bacillus subtilis phosphate-containing units and therefore has a predominant negative charge. The repeating units are attached to a glycolipid anchor which has a diacylglycerol (DAG) moiety attached to a dihexopyranose head group. D-alanylation is known as the major modification of type I and type IV lipoteichoic acids, which partially neutralizes the polymer and plays important roles in bacterial survival and resistance to the host immune system. The biosynthesis pathways of the glycolipid anchor and lipoteichoic acid have been fully characterized. However, the exact mechanism of D-alanyl transfer from the cytosol to cell surface lipoteichoic acid remains unclear. Here I report the use of mass spectrometry in the identification of possible intermediate species in the biosynthesis and D-alanylation of lipoteichoic acid: the glycolipid anchor, nascent lipoteichoic acid primer with one phosphoglycerol unit, as well as monoand di-alanylated forms of the lipoteichoic acid primer. Monitoring these species as well as the recently reported D-alanyl-phosphatidyl glycerol should aid in shedding light on the mechanism of the D-alanylation pathway of lipoteichoic acid. Referee Status:
منابع مشابه
Structure and glycosylation of lipoteichoic acids in Bacillus strains.
The occurrence, structure, and glycosylation of lipoteichoic acids were studied in 15 Bacillus strains, including Bacillus cereus (4 strains), Bacillus subtilis (5 strains), Bacillus licheniformis (1 strain), Bacillus polymyxa (2 strains), and Bacillus circulans (3 strains). Whereas in the cells of B. polymyxa and B. circulans neither lipoteichoic acid nor related amphipathic polymer could be d...
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The synthesis of polyribitol phosphate by polyribitol phosphate polymerase from Staphylococcus aureus H proceeds by a single chain mechanism so that the enzyme completes a chain of approximately 30 units linked to lipoteichoic acid carrier, before starting a new chain. The lipoteichoic acid carrier of Staphylococcus aweus and Bacillus subtilis are interchangeable and can be used both for the sy...
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The synthesis of polyribitol phosphate by polyribitol phosphate polymerase from Staphylococcus aureus H proceeds by a single chain mechanism so that the enzyme completes a chain of approximately 30 units linked to lipoteichoic acid carrier, before starting a new chain. The lipoteichoic acid carrier of Staphylococcus aweus and Bacillus subtilis are interchangeable and can be used both for the sy...
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