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The chemical "9-[3-deoxy-3-(4-O-methyl-(S)-tyrosylglycyl)-β-D-ribofuranosyl]-6-(N,N-dimethylamino)purine" is a complex organic molecule with a unique structure. It is composed of a purine base, which is a fundamental component of nucleic acids, and a modified sugar moiety. The sugar component, β-D-ribofuranosyl, is a derivative of ribose, a sugar found in RNA. The molecule also features a 3-deoxy-3-(4-O-methyl-(S)-tyrosylglycyl) group, indicating the presence of a deoxyribose sugar with a specific amino acid derivative attached. The 4-O-methyl-(S)-tyrosylglycyl part suggests the presence of a methylated tyrosine residue linked to a glycine, which is an unusual modification not commonly found in standard nucleosides. The N,N-dimethylamino group at the 6-position of the purine ring provides additional structural complexity and may influence the molecule's biological activity. 9-[3-deoxy-3-(4-O-methyl-(S)-tyrosylglycyl)-β-D-ribofuranosyl]-6-(N,N-dimethylamino)purine is likely to be of interest in the fields of biochemistry and pharmacology, potentially for its interactions with nucleic acids or as a novel therapeutic agent.

7375-24-8

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7375-24-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 7375-24-8 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 7,3,7 and 5 respectively; the second part has 2 digits, 2 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 7375-24:
(6*7)+(5*3)+(4*7)+(3*5)+(2*2)+(1*4)=108
108 % 10 = 8
So 7375-24-8 is a valid CAS Registry Number.

7375-24-8Downstream Products

7375-24-8Relevant academic research and scientific papers

RIBOSOME-MEDIATED INCORPORATION OF PEPTIDES AND PEPTIDOMIMETICS

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, (2016/08/17)

Modified ribosomes that were selected using a dipeptidyl-puromycin aminonucleoside are used to mediate site-specific incorporation of one or more peptides and peptidomimetics into protein in a cell free translation system. In addition, new fluorescent dipeptidomimetics have been synthesized and incorporated into proteins, as well as modified proteins containing one or more non-naturally occurring dipeptides.

Ribosome-Mediated Incorporation of Dipeptides and Dipeptide Analogues into Proteins in Vitro

Maini, Rumit,Dedkova, Larisa M.,Paul, Rakesh,Madathil, Manikandadas M.,Chowdhury, Sandipan Roy,Chen, Shengxi,Hecht, Sidney M.

, p. 11206 - 11209 (2015/09/21)

Plasmids containing 23S rRNA randomized at positions 2057-2063 and 2502-2507 were introduced into Escherichia coli, affording a library of clones which produced modified ribosomes in addition to the pre-existing wild-type ribosomes. These clones were screened with a derivative of puromycin, a natural product which acts as an analogue of the 3′-end of aminoacyl-tRNA and terminates protein synthesis by accepting the growing polypeptide chain, thereby killing bacterial cells. The puromycin derivative in this study contained the dipeptide p-methoxyphenylalanylglycine, implying the ability of the modified ribosomes in clones sensitive to this puromycin analogue to recognize dipeptides. Several clones inhibited by the puromycin derivative were used to make S-30 preparations, and some of these were shown to support the incorporation of dipeptides into proteins. The four incorporated species included two dipeptides (Gly-Phe (2) and Phe-Gly (3)), as well as a thiolated dipeptide analogue (4) and a fluorescent oxazole (5) having amine and carboxyl groups approximately the same distance apart as in a normal dipeptide. A protein containing both thiolated dipeptide 4 and a 7-methoxycoumarin fluorophore was found to undergo fluorescence quenching. Introduction of the oxazole fluorophore 5 into dihydrofolate reductase or green fluorescent protein resulted in quite strong enhancement of its fluorescence emission, and the basis for this enhancement was studied. The aggregate results demonstrate the feasibility of incorporating dipeptides as a single ribosomal event, and illustrate the lack of recognition of the central peptide bond in the dipeptide, potentially enabling the incorporation of a broad variety of structural analogues.

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