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N-Benzyloxycarbonyl-5-fluoro-RS-tryptophan is a synthetic chemical compound that serves as a derivative of the naturally occurring amino acid tryptophan. In N-Benzyloxycarbonyl-5-fluoro-RS-tryptophan, the tryptophan molecule is modified by the addition of a benzyloxycarbonyl (Z) protecting group and a fluorine atom at the 5-position of the indole ring. The Z group is commonly used in peptide synthesis to protect the amino group, preventing unwanted side reactions, while the fluorine atom substitution provides unique properties and reactivity compared to the parent tryptophan molecule. N-Benzyloxycarbonyl-5-fluoro-RS-tryptophan is of interest in various fields, including medicinal chemistry and drug development, as it can be used to study the effects of fluorination on protein structure and function, as well as to develop new therapeutic agents with improved pharmacokinetic properties.

1881-79-4

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1881-79-4 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1881-79-4 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 1,8,8 and 1 respectively; the second part has 2 digits, 7 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 1881-79:
(6*1)+(5*8)+(4*8)+(3*1)+(2*7)+(1*9)=104
104 % 10 = 4
So 1881-79-4 is a valid CAS Registry Number.

1881-79-4Downstream Products

1881-79-4Relevant academic research and scientific papers

Structure-activity relationship analysis of the selective inhibition of transglutaminase 2 by dihydroisoxazoles

Watts, R. Edward,Siegel, Mathew,Khosla, Chaitan

, p. 7493 - 7501 (2007/10/03)

Human transglutaminase 2 (TG2) is believed to play an important role in the pathogenesis of various human disorders including celiac sprue, certain neurological diseases, and some types of cancer. Selective inhibition of TG2 should therefore enable further investigation of its role in physiology and disease and may lead to effective clinical treatment. Recently we showed that certain 3-halo-4-,5-dihydroisoxazole containing compounds are selective inhibitors of human TG2 with promising pharmacological activities. Here, we present definitive evidence that this class of compounds targets the active site of human TG2. Structure-activity relationship studies have provided insights into the structural prerequisites for selectivity and have led to the discovery of an inhibitor with about 50-fold higher activity than a prototypical dihydroisoxazole inhibitor with good in vivo activity. A method for preparing enantiomerically enriched analogues was also developed. Our studies show that the 5-(S)-dihydroisoxazole is a markedly better inhibitor of human TG2 than its 5-(R) stereoisomer.

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