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Diisopropyl-phosphoramidous acid (2R,3R,4R,5R)-2-[bis-(4-methoxy-phenyl)-phenyl-methoxymethyl]-4-(tert-butyl-dimethyl-silanyloxy)-5-[6-(2-cyano-ethylsulfanyl)-purin-9-yl]-tetrahydro-furan-3-yl ester 2-cyano-ethyl ester is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

170451-76-0

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170451-76-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 170451-76-0 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,7,0,4,5 and 1 respectively; the second part has 2 digits, 7 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 170451-76:
(8*1)+(7*7)+(6*0)+(5*4)+(4*5)+(3*1)+(2*7)+(1*6)=120
120 % 10 = 0
So 170451-76-0 is a valid CAS Registry Number.

170451-76-0Downstream Products

170451-76-0Relevant academic research and scientific papers

Incorporation of 6-thioinosine into oligoribonucleotides

Adams, Chris J.,Farrow, Mark A.,Murray, James B.,Kelly, Sharon M.,Price, Nicholas C.,Stockley, Peter G.

, p. 4637 - 4640 (1995)

Preparation of S6-cyanoethyl-6-thioinosine and its incorporation into oligoribonucleotides, using standard phosphoramidite methods, is described. Evidence for binding between the minimal RNA recognition sequence (minSLIIB) and the cognate HIV-I

Synthesis of 4-Thiouridine, 6-Thioinosine, and 6-Thioguanosine 3′,5′-O-Bisphosphates as Donor Molecules for RNA Ligation and Their Application to the Synthesis of Photoactivatable TMG-Capped U1 snRNA Fragments

Kadokura, Michinori,Wada, Takeshi,Seio, Kohji,Sekine, Mitsuo

, p. 5104 - 5113 (2007/10/03)

4-Thiouridine, 6-thioguanosine, and 6-thioinosine 3′,5′-bisphosphates (9, 20, and 28) were synthesized in good yields by considerably improved methods. In the former two compounds, uridine and 2-N-phenylacetylguanosine were converted via transient O-trimethylsilylation to the corresponding 4- and 6-O-benzenesulfonyl intermediates (2 and 13), which, in turn, were allowed to react with 2-cyanoethanethiol in the presence of N-methylpyrrolidine to give 4-thiouridine (3) and 2-N-phenylacetyl-6-thioguanosine derivatives (14), respectively. In situ dimethoxytritylation of these thionucleoside derivatives gave the 5′-masked products 4 and 15 in high overall yields from 1 and 11. 6-S-(2-Cyanoethyl)-5′-O-(4,4′-dimethoxytrityl)-6-thioinosine (23) was synthesized via substitution of the 5′-O-tritylated 6-chloropurine riboside derivative 22 with 2-cyanoethanethiol. These S-(2-cyanoethyl)thionucleosides were converted to the 2′-O-(tert-butyldimethylsilyl)ribonucleoside 3′-phosphoramidite derivatives 7, 18, and 26 or 3′,5′-bisphosphate derivatives 8, 19, and 27. Treatment of 8, 19, and 27 with DBU gave thionucleoside 3′,5′-bisphosphate derivatives 9, 20, and 28, which were found to be substrates of T4 RNA ligase. These thionucleoside 3′,5′-bisphosphates were examined as donors for ligation with m32,2,7 G5′ pppAmUmA, i.e., the 5′-terminal tetranucleotide fragment of U1 snRNA. The 4-thiouridine 3′,5′-bisphosphate derivative 9 was found to serve as the most active substrate of T4 RNA ligase with a reaction efficiency of 96%.

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