Exact Mass: 1096.706185

Exact Mass Matches: 1096.706185

Found 67 metabolites which its exact mass value is equals to given mass value 1096.706185, within given mass tolerance error 0.05 dalton. Try search metabolite list with more accurate mass tolerance error 0.01 dalton.

CL(8:0/8:0/12:0/18:2(9Z,11Z))

[(2R)-1-[[(2S)-3-[[(2R)-2,3-di(octanoyloxy)propoxy]-hydroxyphosphoryl]oxy-2-hydroxypropoxy]-hydroxyphosphoryl]oxy-3-dodecanoyloxypropan-2-yl] (9Z,11Z)-octadeca-9,11-dienoate

C55H102O17P2 (1096.6591902)


CL(8:0/8:0/12:0/18:2(9Z,11Z)) is a cardiolipin (CL). Cardiolipins are sometimes called a double phospholipid because they have four fatty acid tails, instead of the usual two. CL(8:0/8:0/12:0/18:2(9Z,11Z)) contains two chains of octanoic acid at the C1 and C2 positions, one chain of dodecanoic acid at the C3 position, one chain of (9Z,11Z-octadecadienoyl) at the C4 position. Cardiolipins are known to be present in all mammalian cells especially cells with a high number of mitochondria. De novo synthesis of Cardiolipins begins with condensing phosphatidic acid (PA) with cytidine-5’-triphosphate (CTP) to form cytidine-diphosphate-1,2-diacyl-sn-glycerol (CDP- DG). Glycerol-3-phosphate is subsequently added to this newly formed CDP-DG molecule to form  phosphatidylglycerol phosphate (PGP), which is immediately dephosphorylated to form PG. The final step is the process of condensing the PG molecule with another CDP-DG molecule to form a new cardiolipin, which is catalyzed by cardiolipin synthase. All new cardiolipins will immediately undergo a series remodeling resulting in the common cardiolipin compositions. (PMID:16442164). Cardiolipin synthase shows no selectivity for fatty acyl chains used in the de novo synthesis of cardiolipin (PMID:16442164). Tafazzin is an important enzyme in the remodeling of cardiolipins, and opposite to cardiolipin synthase, it shows strong acyl specificity. This suggest that the specificity in cardiolipin composition is achieved through the remodeling steps. Mutation in the tafazzin gene disrupts the remodeling of cardiolipin and is the cause of Barth syndrome (BTHS), a X-linked human disease (PMID: 16973164). BTHS patients seems to lack acyl specificity and as a result, there are many potential cardiolipin species that can exists (PMID: 16226238). Common fatty acyl chains determined through methods such as gas chromatography and high-performance liquid chromatography are used to generate various cardiolipins and a representative molecule is chosen from each variation.

   

CL(8:0/8:0/i-12:0/18:2(9Z,11Z))

[(2S)-3-({[(2R)-2,3-bis(octanoyloxy)propoxy](hydroxy)phosphoryl}oxy)-2-hydroxypropoxy][(2R)-3-[(10-methylundecanoyl)oxy]-2-[(9Z,11Z)-octadeca-9,11-dienoyloxy]propoxy]phosphinic acid

C55H102O17P2 (1096.6591902)


CL(8:0/8:0/i-12:0/18:2(9Z,11Z)) is a cardiolipin (CL). Cardiolipins are sometimes called a double phospholipid because they have four fatty acid tails, instead of the usual two. CL(8:0/8:0/i-12:0/18:2(9Z,11Z)) contains two chains of octanoic acid at the C1 and C2 positions, one chain of 10-methylundecanoic acid at the C3 position, one chain of (9Z,11Z-octadecadienoyl) at the C4 position. Cardiolipins are known to be present in all mammalian cells especially cells with a high number of mitochondria. De novo synthesis of Cardiolipins begins with condensing phosphatidic acid (PA) with cytidine-5’-triphosphate (CTP) to form cytidine-diphosphate-1,2-diacyl-sn-glycerol (CDP- DG). Glycerol-3-phosphate is subsequently added to this newly formed CDP-DG molecule to form  phosphatidylglycerol phosphate (PGP), which is immediately dephosphorylated to form PG. The final step is the process of condensing the PG molecule with another CDP-DG molecule to form a new cardiolipin, which is catalyzed by cardiolipin synthase. All new cardiolipins will immediately undergo a series remodeling resulting in the common cardiolipin compositions. (PMID:16442164). Cardiolipin synthase shows no selectivity for fatty acyl chains used in the de novo synthesis of cardiolipin (PMID:16442164). Tafazzin is an important enzyme in the remodeling of cardiolipins, and opposite to cardiolipin synthase, it shows strong acyl specificity. This suggest that the specificity in cardiolipin composition is achieved through the remodeling steps. Mutation in the tafazzin gene disrupts the remodeling of cardiolipin and is the cause of Barth syndrome (BTHS), a X-linked human disease (PMID: 16973164). BTHS patients seems to lack acyl specificity and as a result, there are many potential cardiolipin species that can exists (PMID: 16226238). Common fatty acyl chains determined through methods such as gas chromatography and high-performance liquid chromatography are used to generate various cardiolipins and a representative molecule is chosen from each variation.

   

CL(8:0/10:0/10:0/18:2(9Z,11Z))

[(2R)-1-decanoyloxy-3-[[(2S)-3-[[(2R)-2-decanoyloxy-3-octanoyloxypropoxy]-hydroxyphosphoryl]oxy-2-hydroxypropoxy]-hydroxyphosphoryl]oxypropan-2-yl] (9Z,11Z)-octadeca-9,11-dienoate

C55H102O17P2 (1096.6591902)


CL(8:0/10:0/10:0/18:2(9Z,11Z)) is a cardiolipin (CL). Cardiolipins are sometimes called a double phospholipid because they have four fatty acid tails, instead of the usual two. CL(8:0/10:0/10:0/18:2(9Z,11Z)) contains one chain of octanoic acid at the C1 position, two chains of decanoic acid at the C2 and C3 positions, one chain of (9Z,11Z-octadecadienoyl) at the C4 position. Cardiolipins are known to be present in all mammalian cells especially cells with a high number of mitochondria. De novo synthesis of Cardiolipins begins with condensing phosphatidic acid (PA) with cytidine-5’-triphosphate (CTP) to form cytidine-diphosphate-1,2-diacyl-sn-glycerol (CDP- DG). Glycerol-3-phosphate is subsequently added to this newly formed CDP-DG molecule to form  phosphatidylglycerol phosphate (PGP), which is immediately dephosphorylated to form PG. The final step is the process of condensing the PG molecule with another CDP-DG molecule to form a new cardiolipin, which is catalyzed by cardiolipin synthase. All new cardiolipins will immediately undergo a series remodeling resulting in the common cardiolipin compositions. (PMID:16442164). Cardiolipin synthase shows no selectivity for fatty acyl chains used in the de novo synthesis of cardiolipin (PMID:16442164). Tafazzin is an important enzyme in the remodeling of cardiolipins, and opposite to cardiolipin synthase, it shows strong acyl specificity. This suggest that the specificity in cardiolipin composition is achieved through the remodeling steps. Mutation in the tafazzin gene disrupts the remodeling of cardiolipin and is the cause of Barth syndrome (BTHS), a X-linked human disease (PMID: 16973164). BTHS patients seems to lack acyl specificity and as a result, there are many potential cardiolipin species that can exists (PMID: 16226238). Common fatty acyl chains determined through methods such as gas chromatography and high-performance liquid chromatography are used to generate various cardiolipins and a representative molecule is chosen from each variation.

   

[2-hydroxy-3-[hydroxy-[2-hydroxy-3-[hydroxy-[2-hydroxy-3-[(15Z,18Z)-tetracosa-15,18-dienoyl]oxypropoxy]phosphoryl]oxypropoxy]phosphoryl]oxypropyl] tetracosanoate

[2-hydroxy-3-[hydroxy-[2-hydroxy-3-[hydroxy-[2-hydroxy-3-[(15Z,18Z)-tetracosa-15,18-dienoyl]oxypropoxy]phosphoryl]oxypropoxy]phosphoryl]oxypropyl] tetracosanoate

C57H110O15P2 (1096.731957)


   

[2-hydroxy-3-[hydroxy-[2-hydroxy-3-[hydroxy-[2-hydroxy-3-[(E)-tetracos-15-enoyl]oxypropoxy]phosphoryl]oxypropoxy]phosphoryl]oxypropyl] (E)-tetracos-15-enoate

[2-hydroxy-3-[hydroxy-[2-hydroxy-3-[hydroxy-[2-hydroxy-3-[(E)-tetracos-15-enoyl]oxypropoxy]phosphoryl]oxypropoxy]phosphoryl]oxypropyl] (E)-tetracos-15-enoate

C57H110O15P2 (1096.731957)


   

Adgga 22:5_18:3_18:5

Adgga 22:5_18:3_18:5

C67H100O12 (1096.72144)


   

[2-[(4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoyl]oxy-3-[3,4,5-trihydroxy-6-[[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxymethyl]oxan-2-yl]oxypropyl] (14Z,17Z,20Z,23Z)-hexacosa-14,17,20,23-tetraenoate

[2-[(4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoyl]oxy-3-[3,4,5-trihydroxy-6-[[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxymethyl]oxan-2-yl]oxypropyl] (14Z,17Z,20Z,23Z)-hexacosa-14,17,20,23-tetraenoate

C63H100O15 (1096.706185)


   

Adgga 22:6_18:3_18:4

Adgga 22:6_18:3_18:4

C67H100O12 (1096.72144)


   

Adgga 16:3_20:4_22:6

Adgga 16:3_20:4_22:6

C67H100O12 (1096.72144)


   

Adgga 20:4_16:4_22:5

Adgga 20:4_16:4_22:5

C67H100O12 (1096.72144)


   

Adgga 22:5_18:4_18:4

Adgga 22:5_18:4_18:4

C67H100O12 (1096.72144)


   

Adgga 18:5_20:3_20:5

Adgga 18:5_20:3_20:5

C67H100O12 (1096.72144)


   

Adgga 22:6_16:4_20:3

Adgga 22:6_16:4_20:3

C67H100O12 (1096.72144)


   

Adgga 18:5_20:4_20:4

Adgga 18:5_20:4_20:4

C67H100O12 (1096.72144)


   

Adgga 16:4_20:5_22:4

Adgga 16:4_20:5_22:4

C67H100O12 (1096.72144)


   

Adgga 20:5_16:3_22:5

Adgga 20:5_16:3_22:5

C67H100O12 (1096.72144)


   

Adgga 20:5_16:4_22:4

Adgga 20:5_16:4_22:4

C67H100O12 (1096.72144)


   

Adgga 18:5_18:2_22:6

Adgga 18:5_18:2_22:6

C67H100O12 (1096.72144)


   

Adgga 22:3_18:5_18:5

Adgga 22:3_18:5_18:5

C67H100O12 (1096.72144)


   

Adgga 18:2_18:5_22:6

Adgga 18:2_18:5_22:6

C67H100O12 (1096.72144)


   

Adgga 18:3_18:5_22:5

Adgga 18:3_18:5_22:5

C67H100O12 (1096.72144)


   

Adgga 20:3_18:5_20:5

Adgga 20:3_18:5_20:5

C67H100O12 (1096.72144)


   

Adgga 20:4_16:3_22:6

Adgga 20:4_16:3_22:6

C67H100O12 (1096.72144)


   

Adgga 16:2_20:5_22:6

Adgga 16:2_20:5_22:6

C67H100O12 (1096.72144)


   

Adgga 20:5_18:4_20:4

Adgga 20:5_18:4_20:4

C67H100O12 (1096.72144)


   

Adgga 20:4_18:5_20:4

Adgga 20:4_18:5_20:4

C67H100O12 (1096.72144)


   

Adgga 22:6_16:3_20:4

Adgga 22:6_16:3_20:4

C67H100O12 (1096.72144)


   

Adgga 20:5_18:3_20:5

Adgga 20:5_18:3_20:5

C67H100O12 (1096.72144)


   

Adgga 18:5_18:4_22:4

Adgga 18:5_18:4_22:4

C67H100O12 (1096.72144)


   

Adgga 18:4_18:3_22:6

Adgga 18:4_18:3_22:6

C67H100O12 (1096.72144)


   

Adgga 18:4_18:4_22:5

Adgga 18:4_18:4_22:5

C67H100O12 (1096.72144)


   

Adgga 18:5_18:5_22:3

Adgga 18:5_18:5_22:3

C67H100O12 (1096.72144)


   

Adgga 20:5_16:2_22:6

Adgga 20:5_16:2_22:6

C67H100O12 (1096.72144)


   

Adgga 18:4_18:5_22:4

Adgga 18:4_18:5_22:4

C67H100O12 (1096.72144)


   

Adgga 20:4_18:4_20:5

Adgga 20:4_18:4_20:5

C67H100O12 (1096.72144)


   

Adgga 18:3_20:5_20:5

Adgga 18:3_20:5_20:5

C67H100O12 (1096.72144)


   

Adgga 22:5_16:3_20:5

Adgga 22:5_16:3_20:5

C67H100O12 (1096.72144)


   

Adgga 18:3_18:4_22:6

Adgga 18:3_18:4_22:6

C67H100O12 (1096.72144)


   

Adgga 18:5_18:3_22:5

Adgga 18:5_18:3_22:5

C67H100O12 (1096.72144)


   

Adgga 22:5_16:4_20:4

Adgga 22:5_16:4_20:4

C67H100O12 (1096.72144)


   

Adgga 18:4_20:4_20:5

Adgga 18:4_20:4_20:5

C67H100O12 (1096.72144)


   

Adgga 20:5_18:5_20:3

Adgga 20:5_18:5_20:3

C67H100O12 (1096.72144)


   

Adgga 14:1_22:6_22:6

Adgga 14:1_22:6_22:6

C67H100O12 (1096.72144)


   

Adgga 16:4_20:3_22:6

Adgga 16:4_20:3_22:6

C67H100O12 (1096.72144)


   

Adgga 16:4_20:4_22:5

Adgga 16:4_20:4_22:5

C67H100O12 (1096.72144)


   

Adgga 20:3_16:4_22:6

Adgga 20:3_16:4_22:6

C67H100O12 (1096.72144)


   

Adgga 22:6_16:2_20:5

Adgga 22:6_16:2_20:5

C67H100O12 (1096.72144)


   

Adgga 16:3_20:5_22:5

Adgga 16:3_20:5_22:5

C67H100O12 (1096.72144)


   

Adgga 22:6_18:2_18:5

Adgga 22:6_18:2_18:5

C67H100O12 (1096.72144)


   

Adgga 22:4_18:4_18:5

Adgga 22:4_18:4_18:5

C67H100O12 (1096.72144)


   

Adgga 22:6_14:1_22:6

Adgga 22:6_14:1_22:6

C67H100O12 (1096.72144)


   

Adgga 22:4_16:4_20:5

Adgga 22:4_16:4_20:5

C67H100O12 (1096.72144)


   

[3-[hydroxy-[3-hydroxy-2-[(3Z,6Z,9Z,12Z,15Z)-octadeca-3,6,9,12,15-pentaenoyl]oxypropoxy]phosphoryl]oxy-2-[(5Z,8Z,11Z,14Z,17Z)-icosa-5,8,11,14,17-pentaenoyl]oxypropyl] (4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoate

[3-[hydroxy-[3-hydroxy-2-[(3Z,6Z,9Z,12Z,15Z)-octadeca-3,6,9,12,15-pentaenoyl]oxypropoxy]phosphoryl]oxy-2-[(5Z,8Z,11Z,14Z,17Z)-icosa-5,8,11,14,17-pentaenoyl]oxypropyl] (4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoate

C66H97O11P (1096.6768141999999)


   

[2-[(4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoyl]oxy-3-[[2-[(4Z,7Z,10Z,13Z)-hexadeca-4,7,10,13-tetraenoyl]oxy-3-hydroxypropoxy]-hydroxyphosphoryl]oxypropyl] (4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoate

[2-[(4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoyl]oxy-3-[[2-[(4Z,7Z,10Z,13Z)-hexadeca-4,7,10,13-tetraenoyl]oxy-3-hydroxypropoxy]-hydroxyphosphoryl]oxypropyl] (4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoate

C66H97O11P (1096.6768141999999)


   

[1-[hydroxy-[3-hydroxy-2-[(3Z,6Z,9Z,12Z,15Z)-octadeca-3,6,9,12,15-pentaenoyl]oxypropoxy]phosphoryl]oxy-3-[(5Z,8Z,11Z,14Z,17Z)-icosa-5,8,11,14,17-pentaenoyl]oxypropan-2-yl] (4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoate

[1-[hydroxy-[3-hydroxy-2-[(3Z,6Z,9Z,12Z,15Z)-octadeca-3,6,9,12,15-pentaenoyl]oxypropoxy]phosphoryl]oxy-3-[(5Z,8Z,11Z,14Z,17Z)-icosa-5,8,11,14,17-pentaenoyl]oxypropan-2-yl] (4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoate

C66H97O11P (1096.6768141999999)


   

[1-[hydroxy-[3-hydroxy-2-[(5Z,8Z,11Z,14Z,17Z)-icosa-5,8,11,14,17-pentaenoyl]oxypropoxy]phosphoryl]oxy-3-[(3Z,6Z,9Z,12Z,15Z)-octadeca-3,6,9,12,15-pentaenoyl]oxypropan-2-yl] (4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoate

[1-[hydroxy-[3-hydroxy-2-[(5Z,8Z,11Z,14Z,17Z)-icosa-5,8,11,14,17-pentaenoyl]oxypropoxy]phosphoryl]oxy-3-[(3Z,6Z,9Z,12Z,15Z)-octadeca-3,6,9,12,15-pentaenoyl]oxypropan-2-yl] (4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoate

C66H97O11P (1096.6768141999999)


   

[1-[[2-[(4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoyl]oxy-3-[(4Z,7Z,10Z,13Z)-hexadeca-4,7,10,13-tetraenoyl]oxypropoxy]-hydroxyphosphoryl]oxy-3-hydroxypropan-2-yl] (4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoate

[1-[[2-[(4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoyl]oxy-3-[(4Z,7Z,10Z,13Z)-hexadeca-4,7,10,13-tetraenoyl]oxypropoxy]-hydroxyphosphoryl]oxy-3-hydroxypropan-2-yl] (4Z,7Z,10Z,13Z,16Z,19Z)-docosa-4,7,10,13,16,19-hexaenoate

C66H97O11P (1096.6768141999999)