Exact Mass: 477.4182

Exact Mass Matches: 477.4182

Found 59 metabolites which its exact mass value is equals to given mass value 477.4182, within given mass tolerance error 0.05 dalton. Try search metabolite list with more accurate mass tolerance error 0.01 dalton.

(13Z,16Z,19Z)-Docosa-13,16,19-trienoylcarnitine

3-(docosa-13,16,19-trienoyloxy)-4-(trimethylazaniumyl)butanoate

C29H51NO4 (477.3818)


(13Z,16Z,19Z)-docosa-13,16,19-trienoylcarnitine is an acylcarnitine. More specifically, it is an (13Z,16Z,19Z)-docosa-13,16,19-trienoic acid ester of carnitine. Acylcarnitines were first discovered more than 70 year ago (PMID: 13825279). It is believed that there are more than 1000 types of acylcarnitines in the human body. The general role of acylcarnitines is to transport acyl-groups (organic acids and fatty acids) from the cytoplasm into the mitochondria so that they can be broken down to produce energy. This process is known as beta-oxidation. According to a recent review [Dambrova et al. 2021, Physiological Reviews], acylcarnitines (ACs) can be classified into 9 different categories depending on the type and size of their acyl-group: 1) short-chain ACs; 2) medium-chain ACs; 3) long-chain ACs; 4) very long-chain ACs; 5) hydroxy ACs; 6) branched chain ACs; 7) unsaturated ACs; 8) dicarboxylic ACs and 9) miscellaneous ACs. Short-chain ACs have acyl-groups with two to five carbons (C2-C5), medium-chain ACs have acyl-groups with six to thirteen carbons (C6-C13), long-chain ACs have acyl-groups with fourteen to twenty once carbons (C14-C21) and very long-chain ACs have acyl groups with more than 22 carbons. (13Z,16Z,19Z)-docosa-13,16,19-trienoylcarnitine is therefore classified as a very-long chain AC. As a very long-chain acylcarnitine (13Z,16Z,19Z)-docosa-13,16,19-trienoylcarnitine is generally formed in the cytoplasm from very long acyl groups synthesized by fatty acid synthases or obtained from the diet. Very-long-chain fatty acids are generally too long to be involved in mitochondrial beta-oxidation. As a result peroxisomes are the main organelle where very-long-chain fatty acids are metabolized and their acylcarnitines synthesized (PMID: 18793625). Altered levels of very long-chain acylcarnitines can serve as useful markers for inherited disorders of peroxisomal metabolism. The study of acylcarnitines is an active area of research and it is likely that many novel acylcarnitines will be discovered in the coming years. It is also likely that many novel roles in health and disease will be uncovered. An excellent review of the current state of knowledge for acylcarnitines is available at [Dambrova et al. 2021, Physiological Reviews].

   

(7Z,10Z,13E)-Docosa-7,10,13-trienoylcarnitine

3-(docosa-7,10,13-trienoyloxy)-4-(trimethylazaniumyl)butanoate

C29H51NO4 (477.3818)


(7Z,10Z,13E)-docosa-7,10,13-trienoylcarnitine is an acylcarnitine. More specifically, it is an (7Z,10Z,13E)-docosa-7,10,13-trienoic acid ester of carnitine. Acylcarnitines were first discovered more than 70 year ago (PMID: 13825279). It is believed that there are more than 1000 types of acylcarnitines in the human body. The general role of acylcarnitines is to transport acyl-groups (organic acids and fatty acids) from the cytoplasm into the mitochondria so that they can be broken down to produce energy. This process is known as beta-oxidation. According to a recent review [Dambrova et al. 2021, Physiological Reviews], acylcarnitines (ACs) can be classified into 9 different categories depending on the type and size of their acyl-group: 1) short-chain ACs; 2) medium-chain ACs; 3) long-chain ACs; 4) very long-chain ACs; 5) hydroxy ACs; 6) branched chain ACs; 7) unsaturated ACs; 8) dicarboxylic ACs and 9) miscellaneous ACs. Short-chain ACs have acyl-groups with two to five carbons (C2-C5), medium-chain ACs have acyl-groups with six to thirteen carbons (C6-C13), long-chain ACs have acyl-groups with fourteen to twenty once carbons (C14-C21) and very long-chain ACs have acyl groups with more than 22 carbons. (7Z,10Z,13E)-docosa-7,10,13-trienoylcarnitine is therefore classified as a very-long chain AC. As a very long-chain acylcarnitine (7Z,10Z,13E)-docosa-7,10,13-trienoylcarnitine is generally formed in the cytoplasm from very long acyl groups synthesized by fatty acid synthases or obtained from the diet. Very-long-chain fatty acids are generally too long to be involved in mitochondrial beta-oxidation. As a result peroxisomes are the main organelle where very-long-chain fatty acids are metabolized and their acylcarnitines synthesized (PMID: 18793625). Altered levels of very long-chain acylcarnitines can serve as useful markers for inherited disorders of peroxisomal metabolism. The study of acylcarnitines is an active area of research and it is likely that many novel acylcarnitines will be discovered in the coming years. It is also likely that many novel roles in health and disease will be uncovered. An excellent review of the current state of knowledge for acylcarnitines is available at [Dambrova et al. 2021, Physiological Reviews].

   

(7Z,10Z,13E)-Docosa-7,10,13-trienoylcarnitine

(7Z,10Z,13E)-Docosa-7,10,13-trienoylcarnitine

C29H51NO4 (477.3818)


   

(13Z,16Z,19Z)-Docosa-13,16,19-trienoylcarnitine

(13Z,16Z,19Z)-Docosa-13,16,19-trienoylcarnitine

C29H51NO4 (477.3818)


   

N-[(4E,8E,12E)-1,3-dihydroxyhexacosa-4,8,12-trien-2-yl]butanamide

N-[(4E,8E,12E)-1,3-dihydroxyhexacosa-4,8,12-trien-2-yl]butanamide

C30H55NO3 (477.4182)


   

(10Z,13Z,16Z)-N-(1,3-dihydroxyoctan-2-yl)docosa-10,13,16-trienamide

(10Z,13Z,16Z)-N-(1,3-dihydroxyoctan-2-yl)docosa-10,13,16-trienamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxyheptacosa-4,8,12-trien-2-yl]propanamide

N-[(4E,8E,12E)-1,3-dihydroxyheptacosa-4,8,12-trien-2-yl]propanamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxypentacosa-4,8,12-trien-2-yl]pentanamide

N-[(4E,8E,12E)-1,3-dihydroxypentacosa-4,8,12-trien-2-yl]pentanamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxydocosa-4,8,12-trien-2-yl]octanamide

N-[(4E,8E,12E)-1,3-dihydroxydocosa-4,8,12-trien-2-yl]octanamide

C30H55NO3 (477.4182)


   

(13Z,16Z)-N-[(E)-1,3-dihydroxyoct-4-en-2-yl]docosa-13,16-dienamide

(13Z,16Z)-N-[(E)-1,3-dihydroxyoct-4-en-2-yl]docosa-13,16-dienamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxytricosa-4,8,12-trien-2-yl]heptanamide

N-[(4E,8E,12E)-1,3-dihydroxytricosa-4,8,12-trien-2-yl]heptanamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxyoctacosa-4,8,12-trien-2-yl]acetamide

N-[(4E,8E,12E)-1,3-dihydroxyoctacosa-4,8,12-trien-2-yl]acetamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxyhenicosa-4,8,12-trien-2-yl]nonanamide

N-[(4E,8E,12E)-1,3-dihydroxyhenicosa-4,8,12-trien-2-yl]nonanamide

C30H55NO3 (477.4182)


   

(11Z,14Z)-N-[(E)-1,3-dihydroxynon-4-en-2-yl]henicosa-11,14-dienamide

(11Z,14Z)-N-[(E)-1,3-dihydroxynon-4-en-2-yl]henicosa-11,14-dienamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxytetracosa-4,8,12-trien-2-yl]hexanamide

N-[(4E,8E,12E)-1,3-dihydroxytetracosa-4,8,12-trien-2-yl]hexanamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxynonadeca-4,8,12-trien-2-yl]undecanamide

N-[(4E,8E,12E)-1,3-dihydroxynonadeca-4,8,12-trien-2-yl]undecanamide

C30H55NO3 (477.4182)


   

(9Z,12Z)-N-[(E)-1,3-dihydroxytetradec-4-en-2-yl]hexadeca-9,12-dienamide

(9Z,12Z)-N-[(E)-1,3-dihydroxytetradec-4-en-2-yl]hexadeca-9,12-dienamide

C30H55NO3 (477.4182)


   

(Z)-N-[(4E,8E)-1,3-dihydroxytrideca-4,8-dien-2-yl]heptadec-9-enamide

(Z)-N-[(4E,8E)-1,3-dihydroxytrideca-4,8-dien-2-yl]heptadec-9-enamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxyicosa-4,8,12-trien-2-yl]decanamide

N-[(4E,8E,12E)-1,3-dihydroxyicosa-4,8,12-trien-2-yl]decanamide

C30H55NO3 (477.4182)


   

(9Z,12Z)-N-[(E)-1,3-dihydroxytridec-4-en-2-yl]heptadeca-9,12-dienamide

(9Z,12Z)-N-[(E)-1,3-dihydroxytridec-4-en-2-yl]heptadeca-9,12-dienamide

C30H55NO3 (477.4182)


   

(11Z,14Z,17Z)-N-(1,3-dihydroxydecan-2-yl)icosa-11,14,17-trienamide

(11Z,14Z,17Z)-N-(1,3-dihydroxydecan-2-yl)icosa-11,14,17-trienamide

C30H55NO3 (477.4182)


   

(7Z,10Z,13Z)-N-(1,3-dihydroxytetradecan-2-yl)hexadeca-7,10,13-trienamide

(7Z,10Z,13Z)-N-(1,3-dihydroxytetradecan-2-yl)hexadeca-7,10,13-trienamide

C30H55NO3 (477.4182)


   

(11Z,14Z)-N-[(E)-1,3-dihydroxydec-4-en-2-yl]icosa-11,14-dienamide

(11Z,14Z)-N-[(E)-1,3-dihydroxydec-4-en-2-yl]icosa-11,14-dienamide

C30H55NO3 (477.4182)


   

(9Z,12Z)-N-[(E)-1,3-dihydroxyundec-4-en-2-yl]nonadeca-9,12-dienamide

(9Z,12Z)-N-[(E)-1,3-dihydroxyundec-4-en-2-yl]nonadeca-9,12-dienamide

C30H55NO3 (477.4182)


   

(9Z,12Z,15Z)-N-(1,3-dihydroxydodecan-2-yl)octadeca-9,12,15-trienamide

(9Z,12Z,15Z)-N-(1,3-dihydroxydodecan-2-yl)octadeca-9,12,15-trienamide

C30H55NO3 (477.4182)


   

(Z)-N-[(4E,8E)-1,3-dihydroxyheptadeca-4,8-dien-2-yl]tridec-9-enamide

(Z)-N-[(4E,8E)-1,3-dihydroxyheptadeca-4,8-dien-2-yl]tridec-9-enamide

C30H55NO3 (477.4182)


   

(Z)-N-[(4E,8E)-1,3-dihydroxydodeca-4,8-dien-2-yl]octadec-9-enamide

(Z)-N-[(4E,8E)-1,3-dihydroxydodeca-4,8-dien-2-yl]octadec-9-enamide

C30H55NO3 (477.4182)


   

(Z)-N-[(4E,8E)-1,3-dihydroxytetradeca-4,8-dien-2-yl]hexadec-9-enamide

(Z)-N-[(4E,8E)-1,3-dihydroxytetradeca-4,8-dien-2-yl]hexadec-9-enamide

C30H55NO3 (477.4182)


   

(9Z,12Z)-N-[(E)-1,3-dihydroxydodec-4-en-2-yl]octadeca-9,12-dienamide

(9Z,12Z)-N-[(E)-1,3-dihydroxydodec-4-en-2-yl]octadeca-9,12-dienamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxypentadeca-4,8,12-trien-2-yl]pentadecanamide

N-[(4E,8E,12E)-1,3-dihydroxypentadeca-4,8,12-trien-2-yl]pentadecanamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxyheptadeca-4,8,12-trien-2-yl]tridecanamide

N-[(4E,8E,12E)-1,3-dihydroxyheptadeca-4,8,12-trien-2-yl]tridecanamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxyoctadeca-4,8,12-trien-2-yl]dodecanamide

N-[(4E,8E,12E)-1,3-dihydroxyoctadeca-4,8,12-trien-2-yl]dodecanamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxyhexadeca-4,8,12-trien-2-yl]tetradecanamide

N-[(4E,8E,12E)-1,3-dihydroxyhexadeca-4,8,12-trien-2-yl]tetradecanamide

C30H55NO3 (477.4182)


   

N-[(4E,8E,12E)-1,3-dihydroxytetradeca-4,8,12-trien-2-yl]hexadecanamide

N-[(4E,8E,12E)-1,3-dihydroxytetradeca-4,8,12-trien-2-yl]hexadecanamide

C30H55NO3 (477.4182)


   

(Z)-N-[(4E,8E)-1,3-dihydroxyhexadeca-4,8-dien-2-yl]tetradec-9-enamide

(Z)-N-[(4E,8E)-1,3-dihydroxyhexadeca-4,8-dien-2-yl]tetradec-9-enamide

C30H55NO3 (477.4182)


   

(Z)-N-[(4E,8E)-1,3-dihydroxypentadeca-4,8-dien-2-yl]pentadec-9-enamide

(Z)-N-[(4E,8E)-1,3-dihydroxypentadeca-4,8-dien-2-yl]pentadec-9-enamide

C30H55NO3 (477.4182)


   

Cer 17:3;2O/12:1;(2OH)

Cer 17:3;2O/12:1;(2OH)

C29H51NO4 (477.3818)


   

Cer 14:3;2O/15:1;(3OH)

Cer 14:3;2O/15:1;(3OH)

C29H51NO4 (477.3818)


   

Cer 15:3;2O/14:1;(3OH)

Cer 15:3;2O/14:1;(3OH)

C29H51NO4 (477.3818)


   

Cer 15:3;2O/14:1;(2OH)

Cer 15:3;2O/14:1;(2OH)

C29H51NO4 (477.3818)


   

Cer 17:3;2O/12:1;(3OH)

Cer 17:3;2O/12:1;(3OH)

C29H51NO4 (477.3818)


   

Cer 16:3;2O/13:1;(3OH)

Cer 16:3;2O/13:1;(3OH)

C29H51NO4 (477.3818)


   

Cer 14:3;2O/15:1;(2OH)

Cer 14:3;2O/15:1;(2OH)

C29H51NO4 (477.3818)


   

Cer 16:3;2O/13:1;(2OH)

Cer 16:3;2O/13:1;(2OH)

C29H51NO4 (477.3818)


   

(Z)-N-[(4E,8E)-1,3-dihydroxyoctadeca-4,8-dien-2-yl]dodec-5-enamide

(Z)-N-[(4E,8E)-1,3-dihydroxyoctadeca-4,8-dien-2-yl]dodec-5-enamide

C30H55NO3 (477.4182)


   

(Z)-N-[(4E,8E)-1,3-dihydroxytetradeca-4,8-dien-2-yl]hexadec-7-enamide

(Z)-N-[(4E,8E)-1,3-dihydroxytetradeca-4,8-dien-2-yl]hexadec-7-enamide

C30H55NO3 (477.4182)


   

(4Z,7Z)-N-[(E)-1,3-dihydroxytetradec-4-en-2-yl]hexadeca-4,7-dienamide

(4Z,7Z)-N-[(E)-1,3-dihydroxytetradec-4-en-2-yl]hexadeca-4,7-dienamide

C30H55NO3 (477.4182)


   

(Z)-N-[(4E,8E)-1,3-dihydroxyheptadeca-4,8-dien-2-yl]tridec-8-enamide

(Z)-N-[(4E,8E)-1,3-dihydroxyheptadeca-4,8-dien-2-yl]tridec-8-enamide

C30H55NO3 (477.4182)


   

(E)-N-[(2S,3R,4E,8E)-1,3-dihydroxytetradeca-4,8-dien-2-yl]hexadec-9-enamide

(E)-N-[(2S,3R,4E,8E)-1,3-dihydroxytetradeca-4,8-dien-2-yl]hexadec-9-enamide

C30H55NO3 (477.4182)


   

(E)-N-[(2S,3R,4E,6E)-1,3-dihydroxytetradeca-4,6-dien-2-yl]hexadec-9-enamide

(E)-N-[(2S,3R,4E,6E)-1,3-dihydroxytetradeca-4,6-dien-2-yl]hexadec-9-enamide

C30H55NO3 (477.4182)


   

AcCa(22:3)

AcCa(22:3)

C29H51NO4 (477.3818)


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Cer 14:2;O2/16:1

Cer 14:2;O2/16:1

C30H55NO3 (477.4182)


   

Cer 15:2;O2/15:1

Cer 15:2;O2/15:1

C30H55NO3 (477.4182)


   

Cer 16:2;O2/14:1

Cer 16:2;O2/14:1

C30H55NO3 (477.4182)


   
   

Cer 14:0;O2/16:3

Cer 14:0;O2/16:3

C30H55NO3 (477.4182)


   

ST 27:0;O2;Gly

ST 27:0;O2;Gly

C29H51NO4 (477.3818)