Chemical Formula: C27H41NO4

Chemical Formula C27H41NO4

Found 31 metabolite its formula value is C27H41NO4

N-Linoleoyl Tyrosine

(2S)-3-(4-Hydroxyphenyl)-2-(octadeca-9,12-dienoylamino)propanoate

C27H41NO4 (443.3035)


N-linoleoyl tyrosine belongs to the class of compounds known as N-acylamides. These are molecules characterized by a fatty acyl group linked to a primary amine by an amide bond. More specifically, it is a Linoleic acid amide of Tyrosine. It is believed that there are more than 800 types of N-acylamides in the human body. N-acylamides fall into several categories: amino acid conjugates (e.g., those acyl amides conjugated with amino acids), neurotransmitter conjugates (e.g., those acylamides conjugated with neurotransmitters), ethanolamine conjugates (e.g., those acylamides conjugated to ethanolamine), and taurine conjugates (e.g., those acyamides conjugated to taurine). N-Linoleoyl Tyrosine is an amino acid conjugate. N-acylamides can be classified into 9 different categories depending on the size of their acyl-group: 1) short-chain N-acylamides; 2) medium-chain N-acylamides; 3) long-chain N-acylamides; and 4) very long-chain N-acylamides; 5) hydroxy N-acylamides; 6) branched chain N-acylamides; 7) unsaturated N-acylamides; 8) dicarboxylic N-acylamides and 9) miscellaneous N-acylamides. N-Linoleoyl Tyrosine is therefore classified as a long chain N-acylamide. N-acyl amides have a variety of signaling functions in physiology, including in cardiovascular activity, metabolic homeostasis, memory, cognition, pain, motor control and others (PMID: 15655504). N-acyl amides have also been shown to play a role in cell migration, inflammation and certain pathological conditions such as diabetes, cancer, neurodegenerative disease, and obesity (PMID: 23144998; PMID: 25136293; PMID: 28854168).N-acyl amides can be synthesized both endogenously and by gut microbiota (PMID: 28854168). N-acylamides can be biosynthesized via different routes, depending on the parent amine group. N-acyl ethanolamines (NAEs) are formed via the hydrolysis of an unusual phospholipid precursor, N-acyl-phosphatidylethanolamine (NAPE), by a specific phospholipase D. N-acyl amino acids are synthesized via a circulating peptidase M20 domain containing 1 (PM20D1), which can catalyze the bidirectional the condensation and hydrolysis of a variety of N-acyl amino acids. The degradation of N-acylamides is largely mediated by an enzyme called fatty acid amide hydrolase (FAAH), which catalyzes the hydrolysis of N-acylamides into fatty acids and the biogenic amines. Many N-acylamides are involved in lipid signaling system through interactions with transient receptor potential channels (TRP). TRP channel proteins interact with N-acyl amides such as N-arachidonoyl ethanolamide (Anandamide), N-arachidonoyl dopamine and others in an opportunistic fashion (PMID: 23178153). This signaling system has been shown to play a role in the physiological processes involved in inflammation (PMID: 25136293). Other N-acyl amides, including N-oleoyl-glutamine, have also been characterized as TRP channel antagonists (PMID: 29967167). N-acylamides have also been shown to have G-protein-coupled receptors (GPCRs) binding activity (PMID: 28854168). The study of N-acylamides is an active area of research and it is likely that many novel N-acylamides will be discovered in the coming years. It is also likely that many novel roles in health and disease will be uncovered for these molecules.

   

Piericidin B5

Piericidin B5

C27H41NO4 (443.3035)


   
   

1-Hydroxy-5,6-dihydrojervine

1-Hydroxy-5,6-dihydrojervine

C27H41NO4 (443.3035)


   

Veratrenon|Veratrenone

Veratrenon|Veratrenone

C27H41NO4 (443.3035)


   

Piericidin B2

Piericidin B2

C27H41NO4 (443.3035)


   

Piericidin A3

Piericidin A3

C27H41NO4 (443.3035)


   

(23R)-17,23-epoxy-3beta,14-dihydroxy-(5alpha)-veratr-13(18)-en-6-one|Edpetin|edpetine

(23R)-17,23-epoxy-3beta,14-dihydroxy-(5alpha)-veratr-13(18)-en-6-one|Edpetin|edpetine

C27H41NO4 (443.3035)


   

Yibeissine

(3S,3R,3aS,4aS,6S,6aS,6bS,7aR,9R,11R,11aS,11bR)-3,11-dihydroxy-3,6,10,11b-tetramethylspiro[1,2,3,4,4a,6,6a,6b,7,8,11,11a-dodecahydrobenzo[a]fluorene-9,2-3a,4,5,6,7,7a-hexahydro-3H-furo[3,2-b]pyridine]-5-one

C27H41NO4 (443.3035)


Yibeissine is a steroidal alkaloid isolated from the bulb of Fritillaria pallioiflora Schren[1]. Yibeissine is a steroidal alkaloid isolated from the bulb of Fritillaria pallioiflora Schren[1].

   

C27H41NO4_(7E)-3-Isobutyl-4,5,8,12,12-pentamethyl-3,3a,4,6a,9,10,10a,13a,14,15-decahydro-1H-[1,3]dioxolo[7,8]cycloundeca[1,2-d]isoindole-1,16(2H)-dione

NCGC00380117-01_C27H41NO4_(7E)-3-Isobutyl-4,5,8,12,12-pentamethyl-3,3a,4,6a,9,10,10a,13a,14,15-decahydro-1H-[1,3]dioxolo[7,8]cycloundeca[1,2-d]isoindole-1,16(2H)-dione

C27H41NO4 (443.3035)


   

diethyl amide

N-diethyl-9α,11α,15S-trihydroxy-17-phenyl-18,19,20-trinor-prosta-5Z,13E-dien-1-amide

C27H41NO4 (443.3035)


   

3-(4-hydroxyphenyl)-2-[[(9E,12E)-octadeca-9,12-dienoyl]amino]propanoic acid

3-(4-hydroxyphenyl)-2-[[(9E,12E)-octadeca-9,12-dienoyl]amino]propanoic acid

C27H41NO4 (443.3035)


   

(12E)-7,7,12,16,17-pentamethyl-19-(2-methylpropyl)-6,8-dioxa-20-azatetracyclo[12.7.0.01,18.05,9]henicosa-12,15-diene-2,21-dione

(12E)-7,7,12,16,17-pentamethyl-19-(2-methylpropyl)-6,8-dioxa-20-azatetracyclo[12.7.0.01,18.05,9]henicosa-12,15-diene-2,21-dione

C27H41NO4 (443.3035)


   

NA-Tyr 18:2(9E,12E)

NA-Tyr 18:2(9E,12E)

C27H41NO4 (443.3035)


   

NA-Tyr 18:2(9Z,12Z)

NA-Tyr 18:2(9Z,12Z)

C27H41NO4 (443.3035)


   
   

ST 25:3;O2;Gly

ST 25:3;O2;Gly

C27H41NO4 (443.3035)


   

2-methyl-6-(11-oxododecyl)piperidin-3-yl (2e)-3-(4-hydroxyphenyl)prop-2-enoate

2-methyl-6-(11-oxododecyl)piperidin-3-yl (2e)-3-(4-hydroxyphenyl)prop-2-enoate

C27H41NO4 (443.3035)


   

2,3-dimethoxy-6-(10-methoxy-3,7,9,11-tetramethyltetradeca-2,5,7,11-tetraen-1-yl)-5-methylpyridin-4-ol

2,3-dimethoxy-6-(10-methoxy-3,7,9,11-tetramethyltetradeca-2,5,7,11-tetraen-1-yl)-5-methylpyridin-4-ol

C27H41NO4 (443.3035)


   

2,3-dimethoxy-6-(10-methoxy-3,5,7,9,11-pentamethyltrideca-2,5,7,11-tetraen-1-yl)-5-methylpyridin-4-ol

2,3-dimethoxy-6-(10-methoxy-3,5,7,9,11-pentamethyltrideca-2,5,7,11-tetraen-1-yl)-5-methylpyridin-4-ol

C27H41NO4 (443.3035)


   

2,3-dimethoxy-6-[(2e,5e,7e,9r,10r,11e)-10-methoxy-3,7,9,11-tetramethyltetradeca-2,5,7,11-tetraen-1-yl]-5-methylpyridin-4-ol

2,3-dimethoxy-6-[(2e,5e,7e,9r,10r,11e)-10-methoxy-3,7,9,11-tetramethyltetradeca-2,5,7,11-tetraen-1-yl]-5-methylpyridin-4-ol

C27H41NO4 (443.3035)


   

(1's,2s,3s,3'r,5r,7'r,13's,15'r)-15'-hydroxy-12'-(2-hydroxyethyl)-3,3',15'-trimethyl-5-(2-methylprop-1-en-1-yl)-12'-azaspiro[oxolane-2,6'-tetracyclo[8.5.1.0³,⁷.0¹³,¹⁶]hexadecan]-10'(16')-en-11'-one

(1's,2s,3s,3'r,5r,7'r,13's,15'r)-15'-hydroxy-12'-(2-hydroxyethyl)-3,3',15'-trimethyl-5-(2-methylprop-1-en-1-yl)-12'-azaspiro[oxolane-2,6'-tetracyclo[8.5.1.0³,⁷.0¹³,¹⁶]hexadecan]-10'(16')-en-11'-one

C27H41NO4 (443.3035)


   

3,11-dihydroxy-3',6',10,11b-tetramethyl-1,2,3,3'a,4,4',4a,5',6,6',6a,6b,7,7',7'a,8,11,11a-octadecahydro-3'h-spiro[cyclohexa[a]fluorene-9,2'-furo[3,2-b]pyridin]-5-one

3,11-dihydroxy-3',6',10,11b-tetramethyl-1,2,3,3'a,4,4',4a,5',6,6',6a,6b,7,7',7'a,8,11,11a-octadecahydro-3'h-spiro[cyclohexa[a]fluorene-9,2'-furo[3,2-b]pyridin]-5-one

C27H41NO4 (443.3035)


   

(3s,3'r,3'as,4as,6's,6as,6bs,7'ar,9r,11r,11as,11br)-3,11-dihydroxy-3',6',10,11b-tetramethyl-1,2,3,3'a,4,4',4a,5',6,6',6a,6b,7,7',7'a,8,11,11a-octadecahydro-3'h-spiro[cyclohexa[a]fluorene-9,2'-furo[3,2-b]pyridin]-5-one

(3s,3'r,3'as,4as,6's,6as,6bs,7'ar,9r,11r,11as,11br)-3,11-dihydroxy-3',6',10,11b-tetramethyl-1,2,3,3'a,4,4',4a,5',6,6',6a,6b,7,7',7'a,8,11,11a-octadecahydro-3'h-spiro[cyclohexa[a]fluorene-9,2'-furo[3,2-b]pyridin]-5-one

C27H41NO4 (443.3035)


   

2-methyl-6-(11-oxododecyl)piperidin-3-yl 3-(4-hydroxyphenyl)prop-2-enoate

2-methyl-6-(11-oxododecyl)piperidin-3-yl 3-(4-hydroxyphenyl)prop-2-enoate

C27H41NO4 (443.3035)


   

1,3-dihydroxy-3',6',10,11b-tetramethyl-1,2,3,3'a,4,4',4a,5,5',6,6',6a,6b,7,7',7'a,8,11a-octadecahydro-3'h-spiro[cyclohexa[a]fluorene-9,2'-furo[3,2-b]pyridin]-11-one

1,3-dihydroxy-3',6',10,11b-tetramethyl-1,2,3,3'a,4,4',4a,5,5',6,6',6a,6b,7,7',7'a,8,11a-octadecahydro-3'h-spiro[cyclohexa[a]fluorene-9,2'-furo[3,2-b]pyridin]-11-one

C27H41NO4 (443.3035)


   

2,3-dimethoxy-6-[(2e,5e,7e,9s,10s,11e)-10-methoxy-3,7,9,11-tetramethyltetradeca-2,5,7,11-tetraen-1-yl]-5-methylpyridin-4-ol

2,3-dimethoxy-6-[(2e,5e,7e,9s,10s,11e)-10-methoxy-3,7,9,11-tetramethyltetradeca-2,5,7,11-tetraen-1-yl]-5-methylpyridin-4-ol

C27H41NO4 (443.3035)


   

(1s,3r,3'r,3'as,4as,6's,6as,6bs,7'ar,9r,11as,11bs)-1,3-dihydroxy-3',6',10,11b-tetramethyl-1,2,3,3'a,4,4',4a,5,5',6,6',6a,6b,7,7',7'a,8,11a-octadecahydro-3'h-spiro[cyclohexa[a]fluorene-9,2'-furo[3,2-b]pyridin]-11-one

(1s,3r,3'r,3'as,4as,6's,6as,6bs,7'ar,9r,11as,11bs)-1,3-dihydroxy-3',6',10,11b-tetramethyl-1,2,3,3'a,4,4',4a,5,5',6,6',6a,6b,7,7',7'a,8,11a-octadecahydro-3'h-spiro[cyclohexa[a]fluorene-9,2'-furo[3,2-b]pyridin]-11-one

C27H41NO4 (443.3035)


   

2,3-dimethoxy-6-[(2e,5e,7e,9s,10s,11e)-10-methoxy-3,5,7,9,11-pentamethyltrideca-2,5,7,11-tetraen-1-yl]-5-methylpyridin-4-ol

2,3-dimethoxy-6-[(2e,5e,7e,9s,10s,11e)-10-methoxy-3,5,7,9,11-pentamethyltrideca-2,5,7,11-tetraen-1-yl]-5-methylpyridin-4-ol

C27H41NO4 (443.3035)


   

2-[(2e,5e,7e,11z)-10-hydroxy-3,7,9,11,13-pentamethyltetradeca-2,5,7,11-tetraen-1-yl]-5,6-dimethoxy-3-methylpyridin-4-ol

2-[(2e,5e,7e,11z)-10-hydroxy-3,7,9,11,13-pentamethyltetradeca-2,5,7,11-tetraen-1-yl]-5,6-dimethoxy-3-methylpyridin-4-ol

C27H41NO4 (443.3035)


   

(1r,3r,3'r,3'as,4ar,6's,6as,6bs,7'ar,9r,11as,11bs)-1,3-dihydroxy-3',6',10,11b-tetramethyl-1,2,3,3'a,4,4',4a,5,5',6,6',6a,6b,7,7',7'a,8,11a-octadecahydro-3'h-spiro[cyclohexa[a]fluorene-9,2'-furo[3,2-b]pyridin]-11-one

(1r,3r,3'r,3'as,4ar,6's,6as,6bs,7'ar,9r,11as,11bs)-1,3-dihydroxy-3',6',10,11b-tetramethyl-1,2,3,3'a,4,4',4a,5,5',6,6',6a,6b,7,7',7'a,8,11a-octadecahydro-3'h-spiro[cyclohexa[a]fluorene-9,2'-furo[3,2-b]pyridin]-11-one

C27H41NO4 (443.3035)