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1651-29-2

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1651-29-2 Usage

Description

6-Chloro-2-fluoropurine is a heterocyclic building block. It has been used in the synthesis of purine nucleosides that inhibit cyclin-dependent kinases (CDKs) in vitro. 6-Chloro-2-fluoropurine has also been used in the synthesis of purine nucleosides that are active against HIV-1 and hepatitis B virus (HBV) in vitro.

Chemical Properties

Beige solid

Uses

6-Chloro-2-fluoropurine is used as a reagent in the synthesis of several organic compounds including that of 2''-Fluoro-3''-Hydroxymethyl-5''-deoxythreosyl phosphonic acid nucleoside analogues which may potentially act as antiviral agents. It is also used in the synthesis of 2'',5'',5''-trifluoro-3''-hydroxy-apiosyl nucleoside phosphonic acid analogues which may possess potent anti-HCMV properties.

Check Digit Verification of cas no

The CAS Registry Mumber 1651-29-2 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 1,6,5 and 1 respectively; the second part has 2 digits, 2 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 1651-29:
(6*1)+(5*6)+(4*5)+(3*1)+(2*2)+(1*9)=72
72 % 10 = 2
So 1651-29-2 is a valid CAS Registry Number.
InChI:InChI=1/C11H7F17O/c12-4(13,2-1-3-29)5(14,15)6(16,17)7(18,19)8(20,21)9(22,23)10(24,25)11(26,27)28/h29H,1-3H2

1651-29-2 Well-known Company Product Price

  • Brand
  • (Code)Product description
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  • Detail
  • TCI America

  • (C2221)  6-Chloro-2-fluoropurine  >97.0%(HPLC)(T)

  • 1651-29-2

  • 1g

  • 1,150.00CNY

  • Detail
  • Alfa Aesar

  • (H25825)  6-Chloro-2-fluoropurine, 97%   

  • 1651-29-2

  • 100mg

  • 1176.0CNY

  • Detail
  • Alfa Aesar

  • (H25825)  6-Chloro-2-fluoropurine, 97%   

  • 1651-29-2

  • 500mg

  • 3606.0CNY

  • Detail
  • Aldrich

  • (680060)  6-Chloro-2-fluoropurine  97%

  • 1651-29-2

  • 680060-250MG

  • 1,213.29CNY

  • Detail

1651-29-2SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 10, 2017

Revision Date: Aug 10, 2017

1.Identification

1.1 GHS Product identifier

Product name 6-Chloro-2-fluoropurine

1.2 Other means of identification

Product number -
Other names 6-Chloro-2-fluoro-9H-purine

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:1651-29-2 SDS

1651-29-2Relevant articles and documents

Synthesis and Pharmacological Evaluation of Novel Non-nucleotide Purine Derivatives as P2X7 Antagonists for the Treatment of Neuroinflammation

Calzaferri, Francesco,Narros-Fernández, Paloma,De Pascual, Ricardo,De Diego, Antonio M.G.,Nicke, Annette,Egea, Javier,García, Antonio G.,De Los Ríos, Cristóbal

, p. 2272 - 2290 (2021/03/01)

The ATP-gated P2X7 purinergic receptor (P2X7) is involved in the pathogenesis of many neurodegenerative diseases (NDDs). Several P2X7 antagonists have been developed, though none of them reached clinical trials for this indication. In this work, we designed and synthesized novel blood-brain barrier (BBB)-permeable derivatives as potential P2X7 antagonists. They comprise purine or xanthine cores linked to an aryl group through different short spacers. Compounds were tested in YO-PRO-1 uptake assays and intracellular calcium dynamics in a human P2X7-expressing HEK293 cell line, two-electrode voltage-clamp recordings in Xenopus laevis oocytes, and in interleukin 1β release assays in mouse peritoneal macrophages. BBB permeability was assessed by parallel artificial membrane permeability assays and P-glycoprotein ATPase activity. Dichloroarylpurinylethanones featured a certain P2X7 blockade, being compound 6 (2-(6-chloro-9H-purin-9-yl)-1-(2,4-dichlorophenyl)ethan-1-one), named ITH15004, the most potent, selective, and BBB-permeable antagonist. Compound 6 can be considered as a first non-nucleotide purine hit for future drug optimizations.

2-Arylamino-6-ethynylpurines are cysteine-targeting irreversible inhibitors of Nek2 kinase

Bayliss, Richard,Boxall, Kathy,Carbain, Benoit,Coxon, Christopher R.,Fry, Andrew M.,Golding, Bernard T.,Griffin, Roger J.,Hardcastle, Ian R.,Harnor, Suzannah J.,Mas-Droux, Corine,Matheson, Christopher J.,Newell, David R.,Richards, Mark W.,Sivaprakasam, Mangaleswaran,Turner, David,Cano, Céline

, p. 707 - 731 (2020/08/24)

Renewed interest in covalent inhibitors of enzymes implicated in disease states has afforded several agents targeted at protein kinases of relevance to cancers. We now report the design, synthesis and biological evaluation of 6-ethynylpurines that act as covalent inhibitors of Nek2 by capturing a cysteine residue (Cys22) close to the catalytic domain of this protein kinase. Examination of the crystal structure of the non-covalent inhibitor 3-((6-cyclohexylmethoxy-7H-purin-2-yl)amino)benzamide in complex with Nek2 indicated that replacing the alkoxy with an ethynyl group places the terminus of the alkyne close to Cys22 and in a position compatible with the stereoelectronic requirements of a Michael addition. A series of 6-ethynylpurines was prepared and a structure activity relationship (SAR) established for inhibition of Nek2. 6-Ethynyl-N-phenyl-7H-purin-2-amine [IC50 0.15 μM (Nek2)] and 4-((6-ethynyl-7H-purin-2-yl)amino)benzenesulfonamide (IC50 0.14 μM) were selected for determination of the mode of inhibition of Nek2, which was shown to be time-dependent, not reversed by addition of ATP and negated by site directed mutagenesis of Cys22 to alanine. Replacement of the ethynyl group by ethyl or cyano abrogated activity. Variation of substituents on the N-phenyl moiety for 6-ethynylpurines gave further SAR data for Nek2 inhibition. The data showed little correlation of activity with the nature of the substituent, indicating that after sufficient initial competitive binding to Nek2 subsequent covalent modification of Cys22 occurs in all cases. A typical activity profile was that for 2-(3-((6-ethynyl-9H-purin-2-yl)amino)phenyl)acetamide [IC50 0.06 μM (Nek2); GI50 (SKBR3) 2.2 μM] which exhibited >5-10-fold selectivity for Nek2 over other kinases; it also showed > 50% growth inhibition at 10 μM concentration against selected breast and leukaemia cell lines. X-ray crystallographic analysis confirmed that binding of the compound to the Nek2 ATP-binding site resulted in covalent modification of Cys22. Further studies confirmed that 2-(3-((6-ethynyl-9H-purin-2-yl)amino)phenyl)acetamide has the attributes of a drug-like compound with good aqueous solubility, no inhibition of hERG at 25 μM and a good stability profile in human liver microsomes. It is concluded that 6-ethynylpurines are promising agents for cancer treatment by virtue of their selective inhibition of Nek2. This journal is

Cyclin-Dependent Kinase (CDK) Inhibitors: Structure-Activity Relationships and Insights into the CDK-2 Selectivity of 6-Substituted 2-Arylaminopurines

Coxon, Christopher R.,Anscombe, Elizabeth,Harnor, Suzannah J.,Martin, Mathew P.,Carbain, Benoit,Golding, Bernard T.,Hardcastle, Ian R.,Harlow, Lisa K.,Korolchuk, Svitlana,Matheson, Christopher J.,Newell, David R.,Noble, Martin E. M.,Sivaprakasam, Mangaleswaran,Tudhope, Susan J.,Turner, David M.,Wang, Lan Z.,Wedge, Stephen R.,Wong, Christopher,Griffin, Roger J.,Endicott, Jane A.,Cano, Céline

, p. 1746 - 1767 (2017/03/17)

Purines and related heterocycles substituted at C-2 with 4′-sulfamoylanilino and at C-6 with a variety of groups have been synthesized with the aim of achieving selectivity of binding to CDK2 over CDK1. 6-Substituents that favor competitive inhibition at

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