Exact Mass: 136.0762
Exact Mass Matches: 136.0762
Found 82 metabolites which its exact mass value is equals to given mass value 136.0762
,
within given mass tolerance error 0.01 dalton. Try search metabolite list with more accurate mass tolerance error
0.001 dalton.
Tetrahydropteridine
Tetrahydrobiopterin serves well-characterized cofactor functions for hydroxylating aromatic amino acids and ether lipids and for formation of nitric oxide (NO) from L-arginine. Formation of NO involves two cycles of oxidation of Tetrahydrobiopterin to its radical with subsequent rehydroxylation into Tetrahydrobiopterin, one for reduction of the heme-bound arginine-Fe(II)O2 complex of NO synthase (NOS), the other for reduction of the N-hydroxy-L-arginine-Fe(II)O2 complex. Tetrahydrobiopterin-dependent glyceryl ether monooxygenase (EC 1.14.16.5) is found not only in liver and the gastrointestinal tract but also in brain and other organs (this enzyme plays an essential role in conjugation with the cleavage enzyme in the regulation of cellular levels of -alkyl moieties in glycerolipids). Tetrahydrobiopterin is essential for the enzymatic reaction of tyrosine 3-monooxygenase (EC 1.14.16.2) for the first step in the biosynthesis of catecholamines such as norepinephrine, epinephrine and dopamine. Limited Tetrahydrobiopterin availability not only decreases formation of NO but also causes NOS-derived superoxide/hydrogen peroxide production leading to formation of peroxynitrite as well as S-nitrosoglutathione. As a consequence of its oxygen-activating potential, Tetrahydrobiopterin is also subject to autoxidation in a free radical chain reaction in leading to formation of superoxide and finally to hydrogen peroxide. On the other hand, Tetrahydrobiopterin, like other H4-pterins, can scavenge reactive oxygen species and peroxynitrite. Thus, Tetrahydrobiopterin may have opposing effects in various biological systems depending on whether its cofactor roles outweigh its chemical reactivity or vice versa. Sepiapterin reductase (EC 1.1.1.153) catalyzes the reduction of tetrahydro-sepiapterin to tetrahydrobiopterin -the terminal step in this biosynthetic pathway for tetrahydrobiopterin. This reaction is N-acetyl-serotonin-sensitive and can completely inhibit tetrahydrobiopterin synthesis. (PMID: 3881214, 17303893, 3756924, 15223071) [HMDB] Tetrahydrobiopterin serves well-characterized cofactor functions for hydroxylating aromatic amino acids and ether lipids and for formation of nitric oxide (NO) from L-arginine. Formation of NO involves two cycles of oxidation of Tetrahydrobiopterin to its radical with subsequent rehydroxylation into Tetrahydrobiopterin, one for reduction of the heme-bound arginine-Fe(II)O2 complex of NO synthase (NOS), the other for reduction of the N-hydroxy-L-arginine-Fe(II)O2 complex. Tetrahydrobiopterin-dependent glyceryl ether monooxygenase (EC 1.14.16.5) is found not only in liver and the gastrointestinal tract but also in brain and other organs (this enzyme plays an essential role in conjugation with the cleavage enzyme in the regulation of cellular levels of -alkyl moieties in glycerolipids). Tetrahydrobiopterin is essential for the enzymatic reaction of tyrosine 3-monooxygenase (EC 1.14.16.2) for the first step in the biosynthesis of catecholamines such as norepinephrine, epinephrine and dopamine. Limited Tetrahydrobiopterin availability not only decreases formation of NO but also causes NOS-derived superoxide/hydrogen peroxide production leading to formation of peroxynitrite as well as S-nitrosoglutathione. As a consequence of its oxygen-activating potential, Tetrahydrobiopterin is also subject to autoxidation in a free radical chain reaction in leading to formation of superoxide and finally to hydrogen peroxide. On the other hand, Tetrahydrobiopterin, like other H4-pterins, can scavenge reactive oxygen species and peroxynitrite. Thus, Tetrahydrobiopterin may have opposing effects in various biological systems depending on whether its cofactor roles outweigh its chemical reactivity or vice versa. Sepiapterin reductase (EC 1.1.1.153) catalyzes the reduction of tetrahydro-sepiapterin to tetrahydrobiopterin -the terminal step in this biosynthetic pathway for tetrahydrobiopterin. This reaction is N-acetyl-serotonin-sensitive and can completely inhibit tetrahydrobiopterin synthesis. (PMID: 3881214, 17303893, 3756924, 15223071).
1,2-Diacylglycerol-LD-PE-pool
1,2-Diacylglycerol-LD-PE-pool, also known as Auxitrans or Hydrafuca, is classified as a member of the Primary alcohols. Primary alcohols are compounds comprising the primary alcohol functional group, with the general structure RCOH (R=alkyl, aryl). 1,2-Diacylglycerol-LD-PE-pool is considered to be soluble (in water) and relatively neutral A - Alimentary tract and metabolism > A06 - Drugs for constipation > A06A - Drugs for constipation > A06AD - Osmotically acting laxatives
2-Deoxy-D-ribitol
2-Deoxy-D-ribitol is found in herbs and spices. 2-Deoxy-D-ribitol is a constituent of the fruit of Foeniculum vulgare (fennel). Constituent of the fruit of Foeniculum vulgare (fennel). 2-Deoxy-D-ribitol is found in herbs and spices.
1-Deoxy-D-ribitol
1-Deoxy-D-xylitol is found in herbs and spices. 1-Deoxy-D-xylitol is a constituent of the fruit of Foeniculum vulgare (fennel). Constituent of the fruit of Foeniculum vulgare (fennel). 1-Deoxy-D-xylitol is found in herbs and spices.
3-Deoxy-D-arabinitol
3-Deoxy-D-arabinitol is found in herbs and spices. 3-Deoxy-D-arabinitol is a constituent of the fruit of Foeniculum vulgare (fennel)
2-Methylerythritol
2-C-methyl-D-erythritol is a soluble carbohydrate that is found in certain higher plants. In particular, it can be found in the petals, leaves and stems of certain flowering plants (PMID: 15384409). 2-Methylerythritol or 2-C-methyl-D-erythritol is likely a dephosphorylated form of 2-C-methyl-D-erythritol-4-phosphate. 2-C-methyl-D-erythritol-4-phosphate (MEP) is a central component to the non-mevalonate pathway for isoprenoid synthesis. This pathway is unique to certain gram negative and a few gram positive bacteria as well as plants and apicomplexan protozoa such as malaria parasites. Isoprenoid compounds are a diverse group of natural products that are essential components in all cells. Isoprenoids are biosynthesized from the simple precursors isopentenyl diphosphate (IPP) and dimethylallyl diphosphate (DMAPP). IPP and DMAPP serve as the basis for the biosynthesis of molecules used in processes as diverse as protein prenylation, cell membrane maintenance, hormones, protein anchoring and N-glycosylation. 2-Methylerythritol is occasionally found in human urine specimens and is believed to be from exogenous dietary sources (plant products, leafy salads) or possibly produced by certain species of gut microflora. 2-C-methyl-D-erythritol is a soluble carbohydrate that can be found in higher plants (PMID: 15384409) [HMDB]
Pyrimido[5,4-d]pyrimidine, 1,2,3,4-tetrahydro- (8CI)
1H-Imidazo[4,5-b]pyridin-2-amine,5,6-dihydro-(9CI)
PENTAERYTHRITOL
A - Alimentary tract and metabolism > A06 - Drugs for constipation > A06A - Drugs for constipation > A06AD - Osmotically acting laxatives
2-Methylerythritol
A tetritol that is erythritol substituted by a methyl group at position 2.
1-deoxy-d-lyxitol
{"Ingredient_id": "HBIN002478","Ingredient_name": "1-deoxy-d-lyxitol","Alias": "NA","Ingredient_formula": "C5H12O4","Ingredient_Smile": "CC(C(C(CO)O)O)O","Ingredient_weight": "NA","OB_score": "NA","CAS_id": "NA","SymMap_id": "SMIT15001","TCMID_id": "5191","TCMSP_id": "NA","TCM_ID_id": "NA","PubChem_id": "NA","DrugBank_id": "NA"}
1-deoxy-d-xylitol
{"Ingredient_id": "HBIN002480","Ingredient_name": "1-deoxy-d-xylitol","Alias": "NA","Ingredient_formula": "C5H12O4","Ingredient_Smile": "CC(C(C(CO)O)O)O","Ingredient_weight": "136.15 g/mol","OB_score": "NA","CAS_id": "NA","SymMap_id": "NA","TCMID_id": "5219","TCMSP_id": "NA","TCM_ID_id": "NA","PubChem_id": "10796790","DrugBank_id": "NA"}
1-deoxy-l-arabinitol
{"Ingredient_id": "HBIN002483","Ingredient_name": "1-deoxy-l-arabinitol","Alias": "NA","Ingredient_formula": "C5H12O4","Ingredient_Smile": "CC(C(C(CO)O)O)O","Ingredient_weight": "136.15 g/mol","OB_score": "NA","CAS_id": "NA","SymMap_id": "NA","TCMID_id": "5153","TCMSP_id": "NA","TCM_ID_id": "NA","PubChem_id": "90146781","DrugBank_id": "NA"}
1-deoxyxylitol
{"Ingredient_id": "HBIN002490","Ingredient_name": "1-deoxyxylitol","Alias": "NA","Ingredient_formula": "C5H12O4","Ingredient_Smile": "NA","Ingredient_weight": "136.15","OB_score": "NA","CAS_id": "68832-17-7","SymMap_id": "NA","TCMID_id": "NA","TCMSP_id": "NA","TCM_ID_id": "9216","PubChem_id": "NA","DrugBank_id": "NA"}
2-c-methyl-d-erythritol
{"Ingredient_id": "HBIN005463","Ingredient_name": "2-c-methyl-d-erythritol","Alias": "NA","Ingredient_formula": "C5H12O4","Ingredient_Smile": "CC(CO)(C(CO)O)O","Ingredient_weight": "136.15 g/mol","OB_score": "NA","CAS_id": "NA","SymMap_id": "NA","TCMID_id": "14412","TCMSP_id": "NA","TCM_ID_id": "NA","PubChem_id": "138113829","DrugBank_id": "NA"}
2-deoxy-d-ribitol1
{"Ingredient_id": "HBIN005526","Ingredient_name": "2-deoxy-d-ribitol1","Alias": "NA","Ingredient_formula": "C5H12O4","Ingredient_Smile": "C(CO)C(C(CO)O)O","Ingredient_weight": "NA","OB_score": "NA","CAS_id": "NA","SymMap_id": "SMIT15004","TCMID_id": "5207","TCMSP_id": "NA","TCM_ID_id": "NA","PubChem_id": "NA","DrugBank_id": "NA"}