G23487NW

Summary
GlyTouCan ID
G23487NW
Subsumption Level
Linkage-defined saccharide
Monoisotopic Mass
254.1
GlyGen
ChEBI
PubChem Compound
PubChem Substance
CarbBank
40275 45268 45270 47827
3D Structures
GlycoShape
Sequence Descriptors
GlycoCT
RES
1b:o-xgro-TRI-0:0|1:aldi
2b:x-dglc-HEX-1:5
LIN
1:1o(3+1)2d
WURCS
WURCS=2.0/2,2,1/[hxh][a2122h-1x_1-5]/1-2/a3-b1
Literature
Displaying entries 71 - 80 of 80 in total
PubMed ID Title First Author Publication Date Source
10465330 Inhibitory effects of monoacylated 2-O-beta-galactosylglycerols on Epstein-Barr virus activation: the significant role of the hexanoyl chain Colombo D 1999 Aug 23
  • PubChem
9733686 The ggpS Gene from Synechocystis sp. Strain PCC 6803 Encoding Glucosyl-Glycerol-Phosphate Synthase Is Involved in Osmolyte Synthesis Marin K 1998 Sep 15
  • PubChem
9133317 Uptake and use of the osmoprotective compounds trehalose, glucosylglycerol, and sucrose by the cyanobacterium Synechocystis sp. PCC6803 Mikkat S 1997 Mar 07
  • PubChem
9045835 The stpA gene form synechocystis sp. strain PCC 6803 encodes the glucosylglycerol-phosphate phosphatase involved in cyanobacterial osmotic response to salt shock Hagemann M 1997 Mar
  • PubChem
9006025 The ggtA gene encodes a subunit of the transport system for the osmoprotective compound glucosylglycerol in Synechocystis sp. strain PCC 6803 Hagemann M 1997 Feb
  • PubChem
8757737 Active transport of glucosylglycerol is involved in salt adaptation of the cyanobacterium Synechocystis sp. strain PCC 6803 Mikkat S 1996 Jul 01
  • PubChem
8772170 Characterization of a glucosylglycerol-phosphate-accumulating, salt-sensitive mutant of the cyanobacterium Synechocystis sp. strain PCC 6803 Hagemann M 1996 Aug 27
  • PubChem
7961447 A prominent role for glucosylglycerol in the adaptation of Pseudomonas mendocina SKB70 to osmotic stress Pocard JA 1994 Nov
  • PubChem
11539092 Carbon-13 NMR Studies of Salt Shock-Induced Carbohydrate Turnover in the Marine Cyanobacterium Agmenellum quadruplicatum Tel-Or E 1986 Nov 01
  • PubChem
6807296 The physical state of osmoregulatory solutes in unicellular algae. A natural-abundance carbon-13 nuclear-magnetic-resonance relaxation study Norton RS 1982 Mar 15
  • PubChem

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Supported by JST NBDC Grant Number JPMJND2204

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