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55289-66-2 Usage

General Description

2-Pentanone, 5-(acetyloxy)-3-mercapto-, also known as 5-Acetoxy-3-mercaptocyclopentan-1-one, is a chemical compound with the molecular formula C8H14O3S. It is a yellow to brown liquid with a strong odor, and it is primarily used as an intermediate in the synthesis of pharmaceuticals and other organic compounds. This chemical is also known for its potential use as a flavoring agent in the food industry. 2-Pentanone, 5-(acetyloxy)-3-mercapto- has not been extensively studied for its health effects, but it is important to handle it with caution and use it in accordance with safety guidelines.

Check Digit Verification of cas no

The CAS Registry Mumber 55289-66-2 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 5,5,2,8 and 9 respectively; the second part has 2 digits, 6 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 55289-66:
(7*5)+(6*5)+(5*2)+(4*8)+(3*9)+(2*6)+(1*6)=152
152 % 10 = 2
So 55289-66-2 is a valid CAS Registry Number.

55289-66-2SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 14, 2017

Revision Date: Aug 14, 2017

1.Identification

1.1 GHS Product identifier

Product name (4-oxo-3-sulfanylpentyl) acetate

1.2 Other means of identification

Product number -
Other names 5-acetoxy-3-mercapto-pentan-2-one

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:55289-66-2 SDS

55289-66-2Synthetic route

5-Acetoxy-3-chloropentan-2-one
13051-49-5

5-Acetoxy-3-chloropentan-2-one

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

Conditions
ConditionsYield
With potassium hydrosulfide In methanol for 1h; Ambient temperature;73.5%
With sodium hydrogen sulfide In methanol at 0 - 20℃; for 2h; Inert atmosphere;64%
With sodium hydrogensulfide In toluene at 10 - 20℃; for 1h;
bis-(3-acetoxy-1-acetyl-propyl)-disulfide
106590-76-5

bis-(3-acetoxy-1-acetyl-propyl)-disulfide

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

Conditions
ConditionsYield
With acetic acid; zinc
3-chloro-5-acetoxy-pentanone-(2)

3-chloro-5-acetoxy-pentanone-(2)

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

Conditions
ConditionsYield
With sodium hydrogensulfide
3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

[C2,C5-13C2]-7-methyl-3,4-dihydropyrimido[4,5-d]pyrimidine

[C2,C5-13C2]-7-methyl-3,4-dihydropyrimido[4,5-d]pyrimidine

[C2-13C]-3-(([C6-13C]-4-amino-2-methylpyrimidin-5-yl)methyl)-5-(2-hydroxyethyl)-4-methyl-3-thiazolium hydrochloride
1262424-81-6

[C2-13C]-3-(([C6-13C]-4-amino-2-methylpyrimidin-5-yl)methyl)-5-(2-hydroxyethyl)-4-methyl-3-thiazolium hydrochloride

Conditions
ConditionsYield
Stage #1: 3-Mercapto-4-oxopentyl Acetate; [C2,C5-13C2]-7-methyl-3,4-dihydropyrimido[4,5-d]pyrimidine With formic acid at 20 - 30℃; for 0.75h; Inert atmosphere;
Stage #2: With hydrogenchloride In ethanol at 20℃; for 0.75h; Kinetics; Inert atmosphere;
91.3%
3,4-Dihydro-7-methylpyrimido<4,5-d>pyrimidine
31375-19-6

3,4-Dihydro-7-methylpyrimido<4,5-d>pyrimidine

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

Thiamine formate
130967-53-2

Thiamine formate

Conditions
ConditionsYield
With formic acid for 0.5h; Ambient temperature;89.3%
5-aminomethyl-2-ethyl-pyrimidin-4-ylamine
1886-36-8

5-aminomethyl-2-ethyl-pyrimidin-4-ylamine

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; chloride-hydrochloride
4102-72-1

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; chloride-hydrochloride

5-aminomethyl-2-ethyl-pyrimidin-4-ylamine
1886-36-8

5-aminomethyl-2-ethyl-pyrimidin-4-ylamine

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; bromide hydrobromide
6309-04-2

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; bromide hydrobromide

5-aminomethyl-2-ethyl-pyrimidin-4-ylamine
1886-36-8

5-aminomethyl-2-ethyl-pyrimidin-4-ylamine

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; picrate

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; picrate

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

bis-(3-acetoxy-1-acetyl-propyl)-disulfide
106590-76-5

bis-(3-acetoxy-1-acetyl-propyl)-disulfide

Conditions
ConditionsYield
With iodine
3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

(4-amino-2-methyl-pyrimidin-5-ylmethyl)-oxalamic acid
855395-82-3

(4-amino-2-methyl-pyrimidin-5-ylmethyl)-oxalamic acid

Aneurin
70-16-6

Aneurin

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

acetonitrile
75-05-8

acetonitrile

2-(2,4-dimethylthiazol-5-yl)ethanol
2258-19-7

2-(2,4-dimethylthiazol-5-yl)ethanol

Conditions
ConditionsYield
With hydrogenchloride ueber 3-Acetimidoylmercapto-5-acetoxy-pentan-2-on-hydrochlorid;
3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-oxalamic acid
855395-83-4

(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-oxalamic acid

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; chloride-hydrochloride
4102-72-1

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; chloride-hydrochloride

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-oxalamic acid
855395-83-4

(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-oxalamic acid

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; bromide hydrobromide
6309-04-2

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; bromide hydrobromide

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-oxalamic acid
855395-83-4

(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-oxalamic acid

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; picrate

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; picrate

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

2-methyl-4-amino-5-formylaminomethylpyrimidine
1886-34-6

2-methyl-4-amino-5-formylaminomethylpyrimidine

Aneurin
70-16-6

Aneurin

3,4-Dihydro-7-methylpyrimido<4,5-d>pyrimidine
31375-19-6

3,4-Dihydro-7-methylpyrimido<4,5-d>pyrimidine

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

Thiamine hydrochloride
67-03-8

Thiamine hydrochloride

Conditions
ConditionsYield
With hydrogenchloride; formic acid 1.) 30 min, RT, 2.) EtOH, 30 min, RT; Yield given. Multistep reaction;
3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

3,4-dihydro-5-deuterio-7-methylpyrimido[4,5-d]pyrimidine
177411-69-7

3,4-dihydro-5-deuterio-7-methylpyrimido[4,5-d]pyrimidine

C14H18(2)HN4O2S(1+)
177411-70-0

C14H18(2)HN4O2S(1+)

Conditions
ConditionsYield
With hydrogenchloride; ethanol 1.) formic acid, room temperature, 30 min, 2.) room temperature, 30 min; Multistep reaction;
3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

C7H7(2)HN4

C7H7(2)HN4

C14H18(2)HN4O2S(1+)

C14H18(2)HN4O2S(1+)

Conditions
ConditionsYield
With hydrogenchloride; ethanol 1.) formic acid, room temperature, 30 min, 2.) room temperature, 30 min; Multistep reaction;
hydrogenchloride
7647-01-0

hydrogenchloride

hydrogen cyanide
74-90-8

hydrogen cyanide

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

benzene
71-43-2

benzene

5-hydroxyethyl-4-methylthiazole
137-00-8

5-hydroxyethyl-4-methylthiazole

Conditions
ConditionsYield
at 130℃;
hydrogenchloride
7647-01-0

hydrogenchloride

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

acetonitrile
75-05-8

acetonitrile

2-(2,4-dimethylthiazol-5-yl)ethanol
2258-19-7

2-(2,4-dimethylthiazol-5-yl)ethanol

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

N-<2-ethyl-4-amino-pyrimidin-5-yl>-formamide

N-<2-ethyl-4-amino-pyrimidin-5-yl>-formamide

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; chloride-hydrochloride
4102-72-1

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; chloride-hydrochloride

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

N-<2-ethyl-4-amino-pyrimidin-5-yl>-formamide

N-<2-ethyl-4-amino-pyrimidin-5-yl>-formamide

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; bromide hydrobromide
6309-04-2

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; bromide hydrobromide

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

N-<2-ethyl-4-amino-pyrimidin-5-yl>-formamide

N-<2-ethyl-4-amino-pyrimidin-5-yl>-formamide

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; picrate

3-(2-ethyl-4-amino-pyrimidin-5-ylmethyl)-5-(2-hydroxy-ethyl)-4-methyl-thiazolium; picrate

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

(R)-monodeuteriothiamin chloride hydrochloride

(R)-monodeuteriothiamin chloride hydrochloride

Conditions
ConditionsYield
Multi-step reaction with 2 steps
1: 2.) HCl/EtOH / 1.) formic acid, room temperature, 30 min, 2.) room temperature, 30 min
2: aq. HCl / ethanol / 1.) 90 deg C, 2.) 4 deg C, overnight
View Scheme
3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

(S)-monodeuteriothiamin

(S)-monodeuteriothiamin

Conditions
ConditionsYield
Multi-step reaction with 2 steps
1: 2.) HCl/EtOH / 1.) formic acid, room temperature, 30 min, 2.) room temperature, 30 min
2: aq. HCl / ethanol / 1.) 90 deg C, 2.) 4 deg C, overnight
View Scheme
ethyl 3-ethoxyacrylate
5941-55-9

ethyl 3-ethoxyacrylate

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

C14H24O6S
1012795-36-6

C14H24O6S

Conditions
ConditionsYield
With lithium hexamethyldisilazane In toluene at 20℃; for 18h;
5-(aminomethyl)-2-methylpyrimidin-4-amine
95-02-3

5-(aminomethyl)-2-methylpyrimidin-4-amine

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

A

C13H17N4O2S(1+)
1569026-98-7

C13H17N4O2S(1+)

B

Aneurin
70-16-6

Aneurin

C

O-acetylthiamine
130967-52-1

O-acetylthiamine

Conditions
ConditionsYield
Stage #1: 5-(aminomethyl)-2-methylpyrimidin-4-amine With formic acid Reflux; Inert atmosphere;
Stage #2: 3-Mercapto-4-oxopentyl Acetate Reflux; Overall yield = 78.0 %Chromat.;
A 60.3 %Chromat.
B 8.0 %Chromat.
C 9.7 %Chromat.
N-formylethylamine
627-45-2

N-formylethylamine

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

A

C10H16NO2S(1+)
1569027-13-9

C10H16NO2S(1+)

B

C9H14NO2S(1+)
1569027-16-2

C9H14NO2S(1+)

Conditions
ConditionsYield
Stage #1: N-formylethylamine With formic acid Reflux; Inert atmosphere;
Stage #2: 3-Mercapto-4-oxopentyl Acetate Reflux; Overall yield = 29.6 %Chromat.;
A 20.5 %Chromat.
B 9.1 %Chromat.
3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

cyclohexylmethylamine
3218-02-8

cyclohexylmethylamine

A

C15H24NO2S(1+)
1569027-20-8

C15H24NO2S(1+)

B

C14H22NO2S(1+)
1569027-23-1

C14H22NO2S(1+)

Conditions
ConditionsYield
Stage #1: cyclohexylmethylamine With formic acid Reflux; Inert atmosphere;
Stage #2: 3-Mercapto-4-oxopentyl Acetate Reflux; Overall yield = 43.8 %Chromat.;
A 30.5 %Chromat.
B 12.3 %Chromat.
(2-aminomethylpyridine)
3731-51-9

(2-aminomethylpyridine)

3-Mercapto-4-oxopentyl Acetate
55289-66-2

3-Mercapto-4-oxopentyl Acetate

A

C12H15N2OS(1+)

C12H15N2OS(1+)

B

C14H17N2O2S(1+)
1569027-29-7

C14H17N2O2S(1+)

Conditions
ConditionsYield
Stage #1: 2-(Aminomethyl)pyridine With formic acid Reflux; Inert atmosphere;
Stage #2: 3-Mercapto-4-oxopentyl Acetate Reflux; Overall yield = 28.9 %Chromat.;
A 11.2 %Chromat.
B 14.3 %Chromat.

55289-66-2Relevant articles and documents

Determination of pre-steady-state rate constants on the escherichia coli pyruvate dehydrogenase complex reveals that loop movement controls the rate-limiting step

Balakrishnan, Anand,Nemeria, Natalia S.,Chakraborty, Sumit,Kakalis, Lazaros,Jordan, Frank

, p. 18644 - 18655 (2012)

Spectroscopic identification and characterization of covalent and noncovalent intermediates on large enzyme complexes is an exciting and challenging area of modern enzymology. The Escherichia coli pyruvate dehydrogenase multienzyme complex (PDHc), consisting of multiple copies of enzymic components and coenzymes, performs the oxidative decarboxylation of pyruvate to acetyl-CoA and is central to carbon metabolism linking glycolysis to the Krebs cycle. On the basis of earlier studies, we hypothesized that the dynamic regions of the E1p component, which undergo a disorder-order transition upon substrate binding to thiamin diphosphate (ThDP), play a critical role in modulation of the catalytic cycle of PDHc. To test our hypothesis, we kinetically characterized ThDP-bound covalent intermediates on the E1p component, and the lipoamide-bound covalent intermediate on the E2p component in PDHc and in its variants with disrupted active-site loops. Our results suggest that formation of the first covalent predecarboxylation intermediate, C2α-lactylthiamin diphosphate (LThDP), is rate limiting for the series of steps culminating in acetyl-CoA formation. Substitutions in the active center loops produced variants with up to 900-fold lower rates of formation of the LThDP, demonstrating that these perturbations directly affected covalent catalysis. This rate was rescued by up to 5-fold upon assembly to PDHc of the E401K variant. The E1p loop dynamics control covalent catalysis with ThDP and are modulated by PDHc assembly, presumably by selection of catalytically competent loop conformations. This mechanism could be a general feature of 2-oxoacid dehydrogenase complexes because such interfacial dynamic regions are highly conserved.

127. A new convergent synthesis of thiamine hydrochloride

Contant,Forzy,Hengartner,Moine

, p. 1300 - 1305 (2007/10/02)

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