The cellular lipids of Romboutsia.
Abstract
We have examined the lipids of three isolates, Romboutsia lituseburensis, Romboutsia
ilealis, and Romboutsia sp. strain FRIFI, of the newly described genus Romboutsia
by two-dimensional thin-layer chromatography (2D-TLC) and by liquid chromatography/mass
spectrometry (LC/MS). We have found three phospholipids, phosphatidylglycerol (PG),
cardiolipin and phosphatidic acid in all three species. A fourth phospholipid, lysyl-PG,
was found in R. lituseburensis and strain FRIFI. Polyprenyl-phosphates were identified
in the lipid extracts of all three species. Three glycolipids, mono-, di- and tri-hexosyldiacylglycerol,
were common to all three species. An additional glycolipid, tetrahexosyl-diacylglycerol
was identified in strain FRIFI. Acylated trihexosyldiacylglycerol and acyl-tetrahexosydiacylglycerol
were also found in R. ilealis and strain FRIFI. Remarkably, no alk-1-enyl ether lipids
(plasmalogens) were present in Romboutsia as distinct from bacteria of the related
genus Clostridium in which these ether lipids are common. We have compared the lipidome
of Romboutsia with that recently described for Clostridium difficile, which has plasmalogens,
no lysyl-PG, and no tetrahexosyl-diacylglycerol. According to 16S rRNA gene sequencing,
Romboutsia spp. and C. difficile are closely related (>95% sequence identity).
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https://hdl.handle.net/10161/12511Published Version (Please cite this version)
10.1016/j.bbalip.2016.06.006Publication Info
Guan, Ziqiang; Chen, Lingli; Gerritsen, Jacoline; Smidt, Hauke; & Goldfine, Howard (2016). The cellular lipids of Romboutsia. Biochim Biophys Acta, 1861(9 Pt A). pp. 1076-1082. 10.1016/j.bbalip.2016.06.006. Retrieved from https://hdl.handle.net/10161/12511.This is constructed from limited available data and may be imprecise. To cite this
article, please review & use the official citation provided by the journal.
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Show full item recordScholars@Duke
Ziqiang Guan
Research Professor in Biochemistry
We develop and apply mass spectrometry techniques to address biochemical and biomedical
questions that are lipid-related. Research projects include:
1) Structural lipidomics
o Develop and apply high resolution tandem mass spectrometry-based lipidomics for
the discovery, structural elucidation and functional study of novel lipids.
2) Elucidation of novel pathways/enzymes of lipid biosynthesis and metabolism
o Genetic, biochemical and MS a

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