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146-17-8

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146-17-8 Usage

Description

FLAVIN MONONUCLEOTIDE, also known as Riboflavin 5'-Phosphate, is a bioactive form of Riboflavin (vitamin B2) in which the primary hydroxy group has been converted to its dihydrogen phosphate ester. It is a yellow crystalline solid and serves as a nutritional factor and enzyme cofactor found in various food sources and present in minute amounts in all plant and animal cells.

Uses

Used in Nutritional Applications:
FLAVIN MONONUCLEOTIDE is used as a nutritional factor for supporting overall health and well-being. It is found in milk, eggs, malted barley, liver, kidney, heart, and leafy vegetables, with the richest natural source being yeast.
Used in Pharmaceutical Applications:
FLAVIN MONONUCLEOTIDE is used as an enzyme cofactor for facilitating various biochemical reactions in the body, playing a crucial role in energy production and metabolism.
Used in Food Industry:
FLAVIN MONONUCLEOTIDE is used as a supplement in the food industry to enhance the nutritional value of products and maintain the quality of certain foods by acting as an enzyme cofactor.
Used in Research and Development:
FLAVIN MONONUCLEOTIDE is used as a key compound in the synthesis of Riboflavin-4''-phosphate (R415010), which is essential for studying its role in various biological processes and potential applications in medicine and biotechnology.

Check Digit Verification of cas no

The CAS Registry Mumber 146-17-8 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 1,4 and 6 respectively; the second part has 2 digits, 1 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 146-17:
(5*1)+(4*4)+(3*6)+(2*1)+(1*7)=48
48 % 10 = 8
So 146-17-8 is a valid CAS Registry Number.

146-17-8SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 17, 2017

Revision Date: Aug 17, 2017

1.Identification

1.1 GHS Product identifier

Product name FMN

1.2 Other means of identification

Product number -
Other names sodium riboflavine monophosphate

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:146-17-8 SDS

146-17-8Synthetic route

1-(7,8-dimethyl-2,4-dioxo-3,4-dihydrobenzo[g]pteridin-10(2H)-yl)-5-hydroxypentane-2,3,4-triyl triacetate
116081-53-9

1-(7,8-dimethyl-2,4-dioxo-3,4-dihydrobenzo[g]pteridin-10(2H)-yl)-5-hydroxypentane-2,3,4-triyl triacetate

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
With pyridine; trichlorophosphate Behandeln des Reaktionsprodukts mit wss.Alkalilauge;
pyrocatechol cyclophosphoric acid
4846-23-5

pyrocatechol cyclophosphoric acid

riboflavin
83-88-5

riboflavin

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
With pyridine Behandeln der wss.Loesung des Reaktionsprodukts an einem Ionenaustauscher+)>;
ethyl phosphodichloridite
1498-51-7

ethyl phosphodichloridite

riboflavin
83-88-5

riboflavin

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
Erwaermen des Reaktionsprodukts mit wss.HCl;
methyl dichlorophosphoridate
677-24-7

methyl dichlorophosphoridate

riboflavin
83-88-5

riboflavin

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
Erwaermen des Reaktionsprodukts mit wss.HCl;
riboflavin
83-88-5

riboflavin

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
With meta-phosphoric acid Erwaermen des Reaktionsprodukts mit wss.HCl;
With chlorophosphonic acid Behandeln des Reaktionsprodukts mit H2O;
With chloroform; phosphorus pentoxide; phenol Behandeln des Reaktionsprodukts mit wss.HCl;
With pyruvate kinase; phosphoenolpyruvic acid; ATP; riboflavin kinase; magnesium chloride In various solvent(s) at 37℃; for 16h; pH=8;
With human riboflavin kinase from the yeast Schizosaccharomyces pombe; ATP; magnesium chloride; 2,2'-piperazine-1,4-diyl-bis-ethanesulfonic acid at 25 - 100℃; for 0.1h; pH=7; Catalytic behavior; Kinetics; Concentration; Reagent/catalyst; Temperature; Enzymatic reaction;
Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 9H-β-carboline

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 9H-β-carboline

A

betacarboline
244-63-3

betacarboline

B

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
With phosphate buffer pH 6 In water at 5 - 25℃; Equilibrium constant; investigated with absorption spectroscopy;
Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 1-methyl-9H-β-carboline

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 1-methyl-9H-β-carboline

A

harmane
486-84-0

harmane

B

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
With phosphate buffer pH 5.5 In water at 5 - 45℃; Equilibrium constant; investigated with absorption spectroscopy;
Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 1-methyl-9H-β-carbolin-7-ol

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 1-methyl-9H-β-carbolin-7-ol

A

harmol
487-03-6

harmol

B

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
With phosphate buffer pH 6 In water at 5 - 45℃; Equilibrium constant; investigated with absorption spectroscopy;
Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 7-methoxy-1-methyl-9H-β-carboline

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 7-methoxy-1-methyl-9H-β-carboline

A

harmine
442-51-3

harmine

B

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
With phosphate buffer pH 6 In water at 5 - 45℃; Equilibrium constant; investigated with absorption spectroscopy;
Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 7-methoxy-1,2-dimethyl-2H-β-carboline

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 7-methoxy-1,2-dimethyl-2H-β-carboline

A

2-methyl-2H-harmine
6519-18-2

2-methyl-2H-harmine

B

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
With phosphate buffer pH 6 In water at 5 - 45℃; Equilibrium constant; investigated with absorption spectroscopy;
O5'-hydroxyphosphinoyl-riboflavin

O5'-hydroxyphosphinoyl-riboflavin

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
With potassium permanganate
hydrogenchloride
7647-01-0

hydrogenchloride

flavin adenine dinucleotide
146-14-5

flavin adenine dinucleotide

A

lumiflavin
1088-56-8

lumiflavin

B

5'-adenosine monophosphate
61-19-8

5'-adenosine monophosphate

C

Flavin mononucleotide
146-17-8

Flavin mononucleotide

D

riboflavin
83-88-5

riboflavin

Conditions
ConditionsYield
Adenin, O5-Phosphono-D-ribose und H3PO4;
water
7732-18-5

water

flavin adenine dinucleotide
146-14-5

flavin adenine dinucleotide

A

lumiflavin
1088-56-8

lumiflavin

B

5'-adenosine monophosphate
61-19-8

5'-adenosine monophosphate

C

Flavin mononucleotide
146-17-8

Flavin mononucleotide

D

riboflavin
83-88-5

riboflavin

Conditions
ConditionsYield
vom pH 3-9;
bei der Einwirkung von Sonnenlicht;
flavin mononucleotide fully reduced anionic

flavin mononucleotide fully reduced anionic

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
With C54S alkanesulfonate monooxygenase; perfluorooctanesulfonate at 25℃; Kinetics; Concentration; Reagent/catalyst; aq. buffer;
riboflavin 4',5'-cyclic phosphate
986-54-9

riboflavin 4',5'-cyclic phosphate

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Conditions
ConditionsYield
With cyclic nucleotide phosphodiesterase Enzymatic reaction;
N,N'-methanediylidenebis(1-phenylmethanamine)
6721-03-5

N,N'-methanediylidenebis(1-phenylmethanamine)

Flavin mononucleotide
146-17-8

Flavin mononucleotide

O5'-[(N,N'-Dibenzyl-ureido)-hydroxy-phosphoryl]-riboflavin
119415-54-2

O5'-[(N,N'-Dibenzyl-ureido)-hydroxy-phosphoryl]-riboflavin

Conditions
ConditionsYield
With pyridine
benzyl pyrophosphate
19859-87-1

benzyl pyrophosphate

Flavin mononucleotide
146-17-8

Flavin mononucleotide

riboflavin 4',5'-cyclic phosphate
986-54-9

riboflavin 4',5'-cyclic phosphate

Conditions
ConditionsYield
With triethylamine; N,N-dimethyl-formamide
tetraphenyl pyrophosphate
10448-49-4

tetraphenyl pyrophosphate

Flavin mononucleotide
146-17-8

Flavin mononucleotide

riboflavin 4',5'-cyclic phosphate
986-54-9

riboflavin 4',5'-cyclic phosphate

Conditions
ConditionsYield
With triethylamine; N,N-dimethyl-formamide
acetic anhydride
108-24-7

acetic anhydride

Flavin mononucleotide
146-17-8

Flavin mononucleotide

O2',O3',O4'-triacetyl-O5'-phosphono-riboflavin
10588-85-9

O2',O3',O4'-triacetyl-O5'-phosphono-riboflavin

Conditions
ConditionsYield
With perchloric acid
Flavin mononucleotide
146-17-8

Flavin mononucleotide

flavin adenine dinucleotide
146-14-5

flavin adenine dinucleotide

Conditions
ConditionsYield
With FMN-adenyltransferase
bei der Einwirkung eines Enzyms aus Rattenleber;
Flavin mononucleotide
146-17-8

Flavin mononucleotide

riboflavin 4',5'-cyclic phosphate
986-54-9

riboflavin 4',5'-cyclic phosphate

Conditions
ConditionsYield
With trifluoroacetic anhydride Behandeln des erhaltenen Reaktionsprodukts mit aethanol.NH3;
1-methyl-9H-pyrido[3,4-b]indol hydrochloride
21655-84-5

1-methyl-9H-pyrido[3,4-b]indol hydrochloride

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 1-methyl-9H-β-carboline

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 1-methyl-9H-β-carboline

Conditions
ConditionsYield
With phosphate buffer pH 5.5 In water at 5 - 45℃; Equilibrium constant; Thermodynamic data; ΔG0, ΔH0, ΔS0 investigated with absorption and emission spectroscopy;
Harmol hydrochloride
40580-83-4

Harmol hydrochloride

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 1-methyl-9H-β-carbolin-7-ol

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 1-methyl-9H-β-carbolin-7-ol

Conditions
ConditionsYield
With phosphate buffer pH 6 In water at 5 - 45℃; Equilibrium constant; Thermodynamic data; ΔG0, ΔH0, ΔS0 investigated with absorption and emission spectroscopy;
harmine hydrochloride
343-27-1

harmine hydrochloride

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 7-methoxy-1-methyl-9H-β-carboline

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 7-methoxy-1-methyl-9H-β-carboline

Conditions
ConditionsYield
With phosphate buffer pH 6 In water at 5 - 45℃; Equilibrium constant; Thermodynamic data; ΔG0, ΔH0, ΔS0 investigated with absorption and emission spectroscopy;
beta-Carboline hydrochloride
7259-44-1

beta-Carboline hydrochloride

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 9H-β-carboline

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 9H-β-carboline

Conditions
ConditionsYield
With phosphate buffer pH 6 In water at 5 - 25℃; Equilibrium constant; Thermodynamic data; ΔG0, ΔH0, ΔS0 investigated with absorption and emission spectroscopy;
2-methylharmine hydrochloride

2-methylharmine hydrochloride

Flavin mononucleotide
146-17-8

Flavin mononucleotide

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 7-methoxy-1,2-dimethyl-2H-β-carboline

Phosphoric acid mono-[(2R,3S,4S)-5-(7,8-dimethyl-2,4-dioxo-3,4-dihydro-2H-benzo[g]pteridin-10-yl)-2,3,4-trihydroxy-pentyl] ester; compound with 7-methoxy-1,2-dimethyl-2H-β-carboline

Conditions
ConditionsYield
With phosphate buffer pH 6 In water at 5 - 45℃; Equilibrium constant; Thermodynamic data; ΔG0, ΔH0, ΔS0 investigated with absorption and emission spectroscopy;
Flavin mononucleotide
146-17-8

Flavin mononucleotide

reduced flavin mononucleotide
5666-16-0

reduced flavin mononucleotide

Conditions
ConditionsYield
With phosphate buffer; hydrogen; Na2 anchored onto OAE-SEPHADEX anion exchanger at 20℃; for 1.66667h;
With thermophilic old yellow enzyme from Thermoanaerobacter pseudethanolicus; 1-butyl-1,4-dihydropyridine-3-carboxamide In aq. phosphate buffer; dimethyl sulfoxide at 30℃; Kinetics; Reagent/catalyst; Temperature; Flow reactor; Inert atmosphere; Enzymatic reaction;
With Pseudomonas aeruginosa methanesulfonate monooxygenase flavin reductase; NADPH Catalytic behavior; Kinetics; Concentration; Reagent/catalyst; Enzymatic reaction;
Flavin mononucleotide
146-17-8

Flavin mononucleotide

O5'-phosphono-adenosine

O5'-phosphono-adenosine

riboflavin 4',5'-cyclic phosphate
986-54-9

riboflavin 4',5'-cyclic phosphate

Conditions
ConditionsYield
With pyridine; 1,3-Diphenylcarbodiimide
Flavin mononucleotide
146-17-8

Flavin mononucleotide

A

lumiflavin
1088-56-8

lumiflavin

B

riboflavin
83-88-5

riboflavin

C

lumichrome

lumichrome

Conditions
ConditionsYield
mit sichtbares oder ultraviolettes Licht.Irradiation;

146-17-8Related news

Insight into structural rearrangements and interdomain interactions related to electron transfer between FLAVIN MONONUCLEOTIDE (cas 146-17-8) and heme in nitric oxide synthase: A molecular dynamics study09/30/2019

] oxidation states, the pre- and post-IET states. The comparison of the dynamics and conformations of the iNOS construct at the two oxidation states has allowed us to identify key factors related to facilitating the FMN–heme IET process. The computational results demonstrated, for the first tim...detailed

Conformational difference between two subunits in FLAVIN MONONUCLEOTIDE (cas 146-17-8) binding protein dimers from Desulfovibrio vulgaris (MF): molecular dynamics simulation09/29/2019

The structural and dynamical properties of five FMN binding protein (FBP) dimers, WT (wild type), E13K (Glu13 replaced by Lys), E13R (Glu13 replaced by Arg), E13T (Glu13 replaced by Thr) and E13Q (Glu13 replaced by Gln), were investigated using a method of molecular dynamics simulation (MDS). In...detailed

146-17-8Relevant articles and documents

Human riboflavin kinase: Species-specific traits in the biosynthesis of the FMN cofactor

Anoz-Carbonell, Ernesto,Rivero, Maribel,Polo, Victor,Velázquez-Campoy, Adrián,Medina, Milagros

, p. 10871 - 10886 (2020)

Human riboflavin kinase (HsRFK) catalyzes vitamin B2 (riboflavin) phosphorylation to flavin mononucleotide (FMN), obligatory step in flavin cofactor synthesis. HsRFK expression is related to protection from oxidative stress, amyloid-β toxicity, and some malignant cancers progression. Its downregulation alters expression profiles of clock-controlled metabolic-genes and destroys flavins protection on stroke treatments, while its activity reduction links to protein-energy malnutrition and thyroid hormones decrease. We explored specific features of the mechanisms underlying the regulation of HsRFK activity, showing that both reaction products regulate it through competitive inhibition. Fast-kinetic studies show that despite HsRFK binds faster and preferably the reaction substrates, the complex holding both products is kinetically most stable. An intricate ligand binding landscape with all combinations of substrates/products competing with the catalytic complex and exhibiting moderate cooperativity is also presented. These data might contribute to better understanding the molecular bases of pathologies coursing with aberrant HsRFK availability, and envisage that interaction with its client-apoproteins might favor FMN release. Finally, HsRFK parameters differ from those of the so far evaluated bacterial counterparts, reinforcing the idea of species-specific mechanisms in RFK catalysis. These observations support HsRFK as potential therapeutic target because of its key functions, while also envisage bacterial RFK modules as potential antimicrobial targets.

Catalytic role of a conserved cysteine residue in the desulfonation reaction by the alkanesulfonate monooxygenase enzyme

Carpenter, Russell A.,Zhan, Xuanzhi,Ellis, Holly R.

, p. 97 - 105 (2010)

Detailed kinetic studies were performed in order to determine the role of the single cysteine residue in the desulfonation reaction catalyzed by SsuD. Mutation of the conserved cysteine at position 54 in SsuD to either serine or alanine had little effect on FMNH2 binding. The kcat/Km value for the C54S SsuD variant increased 3-fold, whereas the kcat/Km value for C54A SsuD decreased 6-fold relative to wild-type SsuD. An initial fast phase was observed in kinetic traces obtained for the oxidation of flavin at 370 nm when FMNH2 was mixed against C54S SsuD (kobs, 111 s- 1) in oxygenated buffer that was 10-fold faster than wild-type SsuD (kobs, 12.9 s- 1). However, there was no initial fast phase observed in similar kinetic traces obtained for C54A SsuD. This initial fast phase was previously assigned to the formation of the C4a-(hydro)peroxyflavin in studies with wild-type SsuD. There was no evidence for the formation of the C4a-(hydro)peroxyflavin with either SsuD variant when octanesulfonate was included in rapid reaction kinetic studies, even at low octanesulfonate concentrations. The absence of any C4a-(hydro)peroxyflavin accumulation correlates with the increased catalytic activity of C54S SsuD. These results suggest that the conservative serine substitution is able to effectively take the place of cysteine in catalysis. Conversely, decreased accumulation of the C4a-(hydro)peroxyflavin intermediate with the C54A SsuD variant may be due to decreased activity. The data described suggest that Cys54 in SsuD may be either directly or indirectly involved in stabilizing the C4a-(hydro)peroxyflavin intermediate formed during catalysis through hydrogen bonding interactions.

Site-Selective Synthesis of 15N- and 13C-Enriched Flavin Mononucleotide Coenzyme Isotopologues

Neti, Syam Sundar,Poulter, C. Dale

, p. 5087 - 5092 (2016/07/06)

Flavin mononucleotide (FMN) is a coenzyme for numerous proteins involved in key cellular and physiological processes. Isotopically labeled flavin is a powerful tool for studying the structure and mechanism of flavoenzyme-catalyzed reactions by a variety of techniques, including NMR, IR, Raman, and mass spectrometry. In this report, we describe the preparation of labeled FMN isotopologues enriched with 15N and 13C isotopes at various sites in the pyrazine and pyrimidine rings of the isoalloxazine core of the cofactor from readily available precursors by a five-step chemo-enzymatic synthesis.

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