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2280-01-5

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2280-01-5 Usage

Description

N-ACETYL-D-TRYPTOPHAN is a white to off-white powder that serves as an essential precursor in the synthesis of various compounds and products. It is a modified form of the amino acid tryptophan, with an acetyl group attached to the nitrogen atom, which provides unique chemical properties and potential applications.

Uses

Used in Pharmaceutical Industry:
N-ACETYL-D-TRYPTOPHAN is used as an intermediate in the synthesis of peptide drugs for various therapeutic applications. Its unique chemical properties allow for the development of novel drug candidates with improved pharmacokinetic and pharmacodynamic profiles.
Used in Food and Feed Industry:
N-ACETYL-D-TRYPTOPHAN is used in the preparation of enzymes, such as Bordetella petri D-acylated tryptophan hydrolase, which catalyzes the hydrolysis of N-ACETYL-D-TRYPTOPHAN to generate D-tryptophan. This process is essential for the production of food, feed, and peptide drugs, as D-tryptophan is a valuable building block for various bioactive compounds.
Used in Chemical Synthesis:
N-ACETYL-D-TRYPTOPHAN is used as a versatile building block in the synthesis of various organic compounds, including pharmaceuticals, agrochemicals, and other specialty chemicals. Its unique structure and reactivity make it a valuable component in the development of new and innovative products.

Check Digit Verification of cas no

The CAS Registry Mumber 2280-01-5 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,2,8 and 0 respectively; the second part has 2 digits, 0 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 2280-01:
(6*2)+(5*2)+(4*8)+(3*0)+(2*0)+(1*1)=55
55 % 10 = 5
So 2280-01-5 is a valid CAS Registry Number.
InChI:InChI=1/C13H14N2O3/c1-8(16)15-12(13(17)18)6-9-7-14-11-5-3-2-4-10(9)11/h2-5,7,12,14H,6H2,1H3,(H,15,16)(H,17,18)

2280-01-5 Well-known Company Product Price

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  • TCI America

  • (A0119)  N-Acetyl-D-tryptophan  >98.0%(HPLC)(T)

  • 2280-01-5

  • 1g

  • 660.00CNY

  • Detail
  • TCI America

  • (A0119)  N-Acetyl-D-tryptophan  >98.0%(HPLC)(T)

  • 2280-01-5

  • 5g

  • 1,890.00CNY

  • Detail

2280-01-5SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 11, 2017

Revision Date: Aug 11, 2017

1.Identification

1.1 GHS Product identifier

Product name N-acetyl-D-tryptophan

1.2 Other means of identification

Product number -
Other names Nb-acetyl-D-tryptophan

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:2280-01-5 SDS

2280-01-5Relevant articles and documents

Synthesis of tripeptides containing d-Trp substituted at the indole ring, assessment of opioid receptor binding and in vivo central antinociception

De Marco, Rossella,Bedini, Andrea,Spampinato, Santi,Gentilucci, Luca

, p. 6861 - 6866 (2014/10/15)

The noncationizable tripeptide Ac-d-Trp-Phe-GlyNH2 was recently proposed as a novel minimal recognition motif for μ-opioid receptor. The introduction of different substituents (methyl, halogens, nitro, etc.) at the indole of d-Trp significantly influenced receptor affinities and resulted in serum stability and in a measurable effect on central antinociception in mice after ip administration.

The biosynthetic pathway of crucifer phytoalexins and phytoanticipins: De novo incorporation of deuterated tryptophans and quasi-natural compounds

Pedras, M. Soledade C.,Okinyo-Owiti, Denis P.,Thoms, Ken,Adio, Adewale M.

experimental part, p. 1129 - 1138 (2010/06/21)

Although several biosynthetic intermediates in pathways to cruciferous phytoalexins and phytoanticipins are common, questions regarding the introduction of substituents at N-1 of the indole moiety remain unanswered. Toward this end, we investigated the potential incorporations of several perdeuterated d- and l-1′-methoxytryptophans, d- and l-tryptophans and other indol-3-yl derivatives into pertinent phytoalexins and phytoanticipins (indolyl glucosinolates) produced in rutabaga (Brassica napus L. ssp. rapifera) roots. In addition, we probed the potential transformations of quasi-natural compounds, these being analogues of biosynthetic intermediates that might lead to "quasi-natural" products (products similar to natural products but not produced under natural conditions). No detectable incorporations of deuterium labeled 1′-methoxytryptophans into phytoalexins or glucobrassicin were detected. l-tryptophan was incorporated in a higher percentage than d-tryptophan into both phytoalexins and phytoanticipins. However, in the case of the phytoalexin rapalexin A, both d- and l-tryptophan were incorporated to the same extent. Furthermore, the transformations of both 1′-methylindolyl-3′-acetaldoxime and 1′-methylindolyl-3′-acetothiohydroxamic acid (quasi-natural products) into 1′-methylglucobrassicin but not into phytoalexins suggested that post-aldoxime enzymes in the biosynthetic pathway of indolyl glucosinolates are not substrate-specific. Hence, it would appear that the 1-methoxy substituent of the indole moiety is introduced downstream from tryptophan and that the post-aldoxime enzymes of the glucosinolate pathway are different from the enzymes of the phytoalexin pathway. A higher substrate specificity of some enzymes of the phytoalexin pathway might explain the relatively lower structural diversity among phytoalexins than among glucosinolates.

Catalysis by β-cyclodextrin in the reaction of p-nitrophenyl acetate with α-amino acids

Barra, Monica,Rossi, Rita H. de

, p. 1124 - 1130 (2007/10/02)

The reactions of p-nitrophenyl acetate, 1, with both enantiomers of the following α-amino acids: alanine (2a), methionine (2b), leucine (2c), and tryptophan (2d), were studied in the presence of β-cyclodextrin (β-CD).All the reactions were catalyzed by β-

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