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Displaying compounds 1501 - 1525 of 3625 in total

PE(19:0/16:1(9Z))  (ECMDB21064)

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IUPAC: (2-aminoethoxy)[(2R)-2-[(9Z)-hexadec-9-enoyloxy]-3-(nonadecanoyloxy)propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... , the fatty acid distribution at the C-1 and C-2 positions of glycerol within phospholipids is ... ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is then transferred from …

PE(10:0/17:0cycw7c)  (ECMDB21594)

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IUPAC: (2-aminoethoxy)[(2R)-3-(decanoyloxy)-2-{[8-(2-hexylcyclopropyl)octanoyl]oxy}propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... backbone, the fatty acid distribution at the C-1 and C-2 positions of glycerol within phospholipids is ... ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is then …

PE(12:0/10:0)  (ECMDB21599)

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IUPAC: (2-aminoethoxy)[(2R)-2-(decanoyloxy)-3-(dodecanoyloxy)propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... distribution at the C-1 and C-2 positions of glycerol within phospholipids is continually in flux, owing ... phosphorylation and then coupled to CDP. The ethanolamine is then transferred from CDP-ethanolamine …

PE(12:0/18:1(11Z))  (ECMDB21607)

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IUPAC: (2-aminoethoxy)[(2R)-3-(dodecanoyloxy)-2-[(11Z)-octadec-11-enoyloxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... , the fatty acid distribution at the C-1 and C-2 positions of glycerol within phospholipids is ... ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is then transferred …

PE(14:0/17:0cycw7c)  (ECMDB21612)

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IUPAC: (2-aminoethoxy)[(2R)-2-{[8-(2-hexylcyclopropyl)octanoyl]oxy}-3-(tetradecanoyloxy)propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... phospholipids is continually in flux, owing to phospholipid degradation and the continuous phospholipid ... that ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is then …

PE(15:0/12:0)  (ECMDB21614)

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IUPAC: (2-aminoethoxy)[(2R)-2-(dodecanoyloxy)-3-(pentadecanoyloxy)propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... distribution at the C-1 and C-2 positions of glycerol within phospholipids is continually in flux ... activated by phosphorylation and then coupled to CDP. The ethanolamine is then transferred from CDP …

PE(16:0/19:0cycw8c)  (ECMDB21619)

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IUPAC: (2-aminoethoxy)[(2R)-2-{[9-(2-heptylcyclopropyl)nonanoyl]oxy}-3-(hexadecanoyloxy)propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... phospholipids is continually in flux, owing to phospholipid degradation and the continuous phospholipid ... requires that ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is

PE(18:0/17:0cycw7c)  (ECMDB21626)

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IUPAC: (2-aminoethoxy)[(2R)-2-{[8-(2-hexylcyclopropyl)octanoyl]oxy}-3-(octadecanoyloxy)propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... phospholipids is continually in flux, owing to phospholipid degradation and the continuous phospholipid ... that ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is then …

PE(19:0cycw8c/10:0)  (ECMDB21631)

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IUPAC: (2-aminoethoxy)[(2R)-2-(decanoyloxy)-3-{[9-(2-heptylcyclopropyl)nonanoyl]oxy}propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... phospholipids is continually in flux, owing to phospholipid degradation and the continuous phospholipid ... that ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is then …

PE(10:0(3-OH)/10:0)  (ECMDB23439)

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IUPAC: (2-aminoethoxy)[(2R)-2-(decanoyloxy)-3-[(3-hydroxydecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... , the fatty acid distribution at the C-1 and C-2 positions of glycerol within phospholipids is ... ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is then transferred …

PE(10:0(3-OH)/15:0cyclo)  (ECMDB23446)

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IUPAC: (2-aminoethoxy)[(2R)-2-{[8-(2-butylcyclopropyl)octanoyl]oxy}-3-[(3-hydroxydecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... glycerol within phospholipids is continually in flux, owing to phospholipid degradation and the ... . The ethanolamine is then transferred from CDP-ethanolamine to phosphatidic acid to yield PE. The second involves the decarboxylation of PS. …

PE(10:0(3-OH)/19:0cycv8c)  (ECMDB23451)

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IUPAC: (2-aminoethoxy)[(2R)-2-{[10-(2-hexylcyclopropyl)decanoyl]oxy}-3-[(3-hydroxydecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with ... within phospholipids is continually in flux, owing to phospholipid degradation and the continuous ... ethanolamine is then transferred from CDP-ethanolamine to phosphatidic acid to yield PE. The second involves the decarboxylation of PS. …

PE(10:0/10:0(3-OH))  (ECMDB23453)

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IUPAC: (2-aminoethoxy)[(2R)-3-(decanoyloxy)-2-[(3-hydroxydecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... , the fatty acid distribution at the C-1 and C-2 positions of glycerol within phospholipids is ... ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is then transferred …

PE(12:0(3-OH)/10:0(3-OH))  (ECMDB23458)

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IUPAC: (2-aminoethoxy)[(2R)-2-[(3-hydroxydecanoyl)oxy]-3-[(3-hydroxydodecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with ... phospholipids is continually in flux, owing to phospholipid degradation and the continuous ... is then transferred from CDP-ethanolamine to phosphatidic acid to yield PE. The second involves the decarboxylation of PS. …

PE(12:0(3-OH)/16:0)  (ECMDB23465)

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IUPAC: (2-aminoethoxy)[(2R)-2-(hexadecanoyloxy)-3-[(3-hydroxydodecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... backbone, the fatty acid distribution at the C-1 and C-2 positions of glycerol within phospholipids is ... ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is then …

PE(12:0(3-OH)/19:iso)  (ECMDB23470)

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IUPAC: (2-aminoethoxy)[(2R)-3-[(3-hydroxydodecanoyl)oxy]-2-[(17-methyloctadecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... phospholipids is continually in flux, owing to phospholipid degradation and the continuous phospholipid ... requires that ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is

PE(14:0(3-OH)/15:0cyclo)  (ECMDB23482)

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IUPAC: (2-aminoethoxy)[(2R)-2-{[8-(2-butylcyclopropyl)octanoyl]oxy}-3-[(3-hydroxytetradecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... of glycerol within phospholipids is continually in flux, owing to phospholipid degradation and the ... CDP. The ethanolamine is then transferred from CDP-ethanolamine to phosphatidic acid to yield PE. The second involves the decarboxylation of PS. …

PE(14:0(3-OH)/16:1(9Z))  (ECMDB23484)

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IUPAC: (2-aminoethoxy)[(2R)-2-[(9Z)-hexadec-9-enoyloxy]-3-[(3-hydroxytetradecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... phospholipids is continually in flux, owing to phospholipid degradation and the continuous phospholipid ... requires that ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is

PE(14:0/10:0(3-OH))  (ECMDB23489)

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IUPAC: (2-aminoethoxy)[(2R)-2-[(3-hydroxydecanoyl)oxy]-3-(tetradecanoyloxy)propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... backbone, the fatty acid distribution at the C-1 and C-2 positions of glycerol within phospholipids is ... ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is then …

PE(15:0/19:iso)  (ECMDB23496)

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IUPAC: (2-aminoethoxy)[(2R)-2-[(17-methyloctadecanoyl)oxy]-3-(pentadecanoyloxy)propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... , the fatty acid distribution at the C-1 and C-2 positions of glycerol within phospholipids is ... ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is then transferred …

PE(16:1(9Z)/14:0(3-OH))  (ECMDB23507)

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IUPAC: (2-aminoethoxy)[(2R)-3-[(9Z)-hexadec-9-enoyloxy]-2-[(3-hydroxytetradecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... phospholipids is continually in flux, owing to phospholipid degradation and the continuous phospholipid ... requires that ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is

PE(17:0cycw7c/19:iso)  (ECMDB23512)

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IUPAC: (2-aminoethoxy)[(2R)-3-{[8-(2-hexylcyclopropyl)octanoyl]oxy}-2-[(17-methyloctadecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... phospholipids is continually in flux, owing to phospholipid degradation and the continuous ... ethanolamine is then transferred from CDP-ethanolamine to phosphatidic acid to yield PE. The second involves the decarboxylation of PS. …

PE(18:1(9Z)/12:0(3-OH))  (ECMDB23514)

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IUPAC: (2-aminoethoxy)[(2R)-2-[(3-hydroxydodecanoyl)oxy]-3-[(9Z)-octadec-9-enoyloxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... phospholipids is continually in flux, owing to phospholipid degradation and the continuous phospholipid ... requires that ethanolamine be activated by phosphorylation and then coupled to CDP. The ethanolamine is

PE(19:0cycv8c/14:0(3-OH))  (ECMDB23519)

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IUPAC: (2-aminoethoxy)[(2R)-3-{[10-(2-hexylcyclopropyl)decanoyl]oxy}-2-[(3-hydroxytetradecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with ... glycerol within phospholipids is continually in flux, owing to phospholipid degradation and the ... ethanolamine is then transferred from CDP-ethanolamine to phosphatidic acid to yield PE. The second involves the decarboxylation of PS. …

PE(19:iso/14:0(3-OH))  (ECMDB23526)

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IUPAC: (2-aminoethoxy)[(2R)-2-[(3-hydroxytetradecanoyl)oxy]-3-[(17-methyloctadecanoyl)oxy]propoxy]phosphinic acid
Matched Description: … phosphorylethanolamine moiety occupies a glycerol substitution site. As is the case with diacylglycerols ... phospholipids is continually in flux, owing to phospholipid degradation and the continuous ... is then transferred from CDP-ethanolamine to phosphatidic acid to yield PE. The second involves the decarboxylation of PS. …