RRC ID 5024
著者 Morii H, Eguchi T, Koga Y.
タイトル In vitro biosynthesis of ether-type glycolipids in the methanoarchaeon Methanothermobacter thermautotrophicus.
ジャーナル J Bacteriol
Abstract The biosynthesis of archaeal ether-type glycolipids was investigated in vitro using Methanothermobacter thermautotrophicus cell-free homogenates. The sole sugar moiety of glycolipids and phosphoglycolipids of the organism is the beta-D-glucosyl-(1-->6)-D-glucosyl (gentiobiosyl) unit. The enzyme activities of archaeol:UDP-glucose beta-glucosyltransferase (monoglucosylarchaeol [MGA] synthase) and MGA:UDP-glucose beta-1,6-glucosyltransferase (diglucosylarchaeol [DGA] synthase) were found in the methanoarchaeon. The synthesis of DGA is probably a two-step glucosylation: (i) archaeol + UDP-glucose --> MGA + UDP, and (ii) MGA + UDP-glucose --> DGA + UDP. Both enzymes required the addition of K(+) ions and archaetidylinositol for their activities. DGA synthase was stimulated by 10 mM MgCl(2), in contrast to MGA synthase, which did not require Mg(2+). It was likely that the activities of MGA synthesis and DGA synthesis were carried out by different proteins because of the Mg(2+) requirement and their cellular localization. MGA synthase and DGA synthase can be distinguished in cell extracts greatly enriched for each activity by demonstrating the differing Mg(2+) requirements of each enzyme. MGA synthase preferred a lipid substrate with the sn-2,3 stereostructure of the glycerol backbone on which two saturated isoprenoid chains are bound at the sn-2 and sn-3 positions. A lipid substrate with unsaturated isoprenoid chains or sn-1,2-dialkylglycerol configuration exhibited low activity. Tetraether-type caldarchaetidylinositol was also actively glucosylated by the homogenates to form monoglucosyl caldarchaetidylinositol and a small amount of diglucosyl caldarchaetidylinositol. The addition of Mg(2+) increased the formation of diglucosyl caldarchaetidylinositol. This suggested that the same enzyme set synthesized the sole sugar moiety of diether-type glycolipids and tetraether-type phosphoglycolipids.
巻・号 189(11)
ページ 4053-61
公開日 2007-6-1
DOI 10.1128/JB.01875-06
PII JB.01875-06
PMID 17416653
PMC PMC1913393
MeSH Archaeal Proteins / metabolism Catalysis / drug effects Glucosyltransferases / metabolism Glyceryl Ethers / chemistry Glyceryl Ethers / metabolism* Glycolipids / chemistry Glycolipids / metabolism* Magnesium / pharmacology Magnetic Resonance Spectroscopy Methanobacteriaceae / enzymology Methanobacteriaceae / metabolism* Models, Chemical Molecular Structure Substrate Specificity Uridine Diphosphate Glucose / metabolism
IF 3.006
引用数 7
WOS 分野 MICROBIOLOGY
リソース情報
一般微生物 JCM8981