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2(alpha-D-mannosyl)-D-glycerate, 2-(alpha-D-mannosyl)-D-glycerate, 2-O-(alpha-D-mannopyranosyl)-D-glycerate [side 1], 2-O-(alpha-D-mannosyl)-D-glycerate, 2-O-alpha-D-mannosyl-D-glycerate, 2-O-alpha-mannosyl-D-glycerate [side 1]
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GDP-mannose + D-glycerate = 2-O-(alpha-D-mannopyranosyl)-D-glycerate + GDP
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2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
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GDP-alpha-D-mannose + D-glycerate = GDP + 2-O-(alpha-D-mannopyranosyl)-D-glycerate
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GDP-mannose + D-glycerate = 2-O-(alpha-D-mannopyranosyl)-D-glycerate + GDP
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2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
2(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2(alpha-D-mannosyl)-D-glycerate + phosphate
2-(alpha-D-glucosyl)-3-phosphoglycerate + H2O = 2-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-(alpha-D-glucosyl)-3-phosphoglycerate + H2O = 2-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-(alpha-D-glucosyl)-3-phosphoglycerate + H2O = 2-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-(alpha-D-glucosyl)-3-phosphoglycerate + H2O = 2-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-(alpha-D-glucosyl)-3-phosphoglycerate + H2O = 2-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-(alpha-D-glucosyl)-3-phosphoglycerate + H2O = 2-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-O-(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2-O-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-O-(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2-O-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-O-(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2-O-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-O-(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2-O-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-O-(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2-O-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-O-(alpha-D-mannosyl)-3-phosphoglycerate + H2O = 2-O-(alpha-D-mannosyl)-D-glycerate + phosphate
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2-O-(alpha-D-mannopyranosyl)-3-phospho-D-glycerate + H2O = 2-O-(alpha-D-mannopyranosyl)-D-glycerate + phosphate
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Pathway for the synthesis of mannosylglycerate in the hyperthermophilic archaeon Pyrococcus horikoshii. Biochemical and genetic characterization of key enzymes
2001
Empadinhas, N.; Marugg, J.D.; Borges, N.; Santos, H.; Da Costa, M.S.
J. Biol. Chem.
276
43580-43588
Phosphotransferase-mediated transport of the osmolyte 2-O-alpha-mannosyl-D-glycerate in Escherichia coli occurs by the product of the mngA (hrsA) gene and is regulated by the mngR (farR) gene product acting as repressor
2004
Sampaio, M.; Chevance, F.; Dippel, R.; Eppler, T.; Schlegel, A.; Boos, W.; Lu, Y.; Rock, C.
J. Biol. Chem.
279
5537-5548
The plant Selaginella moellendorffii possesses enzymes for synthesis and hydrolysis of the compatible solutes mannosylglycerate and glucosylglycerate
2012
Nobre, A.; Empadinhas, N.; Nobre, M.; Lourenco, E.; Maycock, C.; Ventura, M.; Mingote, A.; da Costa, M.
Planta
237
891-901
A new bacterial hydrolase specific for the compatible solutes alpha-D-mannopyranosyl-(1->2)-D-glycerate and alpha-D-glucopyranosyl-(1->2)-D-glycerate
2013
Alarico, S.; Empadinhas, N.; da Costa, M.
Enzyme Microb. Technol.
52
77-83
A new bacterial hydrolase specific for the compatible solutes alpha-D-mannopyranosyl-(1->2)-D-glycerate and alpha-D-glucopyranosyl-(1->2)-D-glycerate
2013
Alarico, S.; Empadinhas, N.; da Costa, M.
Enzyme Microb. Technol.
52
77-83
The structural characterization of a glucosylglycerate hydrolase provides insights into the molecular mechanism of mycobacterial recovery from nitrogen starvation
2019
Cereija, T.B.; Alarico, S.; Lourenco, E.C.; Manso, J.A.; Ventura, M.R.; Empadinhas, N.; Macedo-Ribeiro, S.; Pereira, P.J.B.
IUCrJ
6
572-585