Literature DB >> 7622293

Purine enzyme profile in human colon-carcinoma cell lines and differential sensitivity to deoxycoformycin and 2'-deoxyadenosine in combination.

M Camici1, M Turriani, M G Tozzi, G Turchi, J Cos, C Alemany, A Miralles, V Noe, C J Ciudad.   

Abstract

Different cell lines, 2 from human colon carcinoma (LoVo and HT29) and 1 from Chinese hamster ovary (CHO K-I), were examined to assess the effect of deoxycoformycin (dCF), an inhibitor of adenosine deaminase (ADA), and 2'-deoxyadenosine (dAdo) on their growth. When used alone, neither dCF or dAdo were cytotoxic for the 3 cell lines, while their combination caused inhibition of cell growth, with the following sensitivity: CHO K-I > LoVo > HT29. We studied the pattern of enzymatic activities involved in the metabolism of dAdo in the 3 cell lines. The phosphorylation of dAdo by adenosine kinase appears to play a central role in the toxicity of the deoxynucleoside in combination with dCF. In fact, CHO K-I cells, which are the most sensitive, possess the highest level of this enzyme. Moreover, the cytotoxic effect was almost completely reversed in the 3 cell lines when inhibitors of adenosine kinase, such as 5'-amino-5'-deoxyadenosine and iodotubercidine, were added to the culture medium together with dCF and dAdo. In addition, baby hamster kidney (BHK) adenosine-kinase-deficient (AK-) cells were highly resistant to this treatment. Uptake inhibition of dAdo using dipyridamole also caused reversal of the toxicity. The AMP and deoxyAMP dephosphorylating activities, much lower in the CHO K-I cells, also appear to play a central role in the toxicity of dAdo when adenosine deaminase is inhibited. However, our data suggest that other factors may modulate the toxic effect, such as S-adenosyl-homocysteine-hydrolase inhibition by dAdo at high concentrations.

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Year:  1995        PMID: 7622293     DOI: 10.1002/ijc.2910620212

Source DB:  PubMed          Journal:  Int J Cancer        ISSN: 0020-7136            Impact factor:   7.396


  7 in total

1.  Methylation inhibitors can increase the rate of cytosine deamination by (cytosine-5)-DNA methyltransferase.

Authors:  J M Zingg; J C Shen; A S Yang; H Rapoport; P A Jones
Journal:  Nucleic Acids Res       Date:  1996-08-15       Impact factor: 16.971

2.  Adenosine deaminase in saliva as a diagnostic marker of squamous cell carcinoma of tongue.

Authors:  Balwant Rai; Jasdeep Kaur; Reinhilde Jacobs; Suresh Chander Anand
Journal:  Clin Oral Investig       Date:  2010-04-09       Impact factor: 3.573

3.  The experimental chemotherapeutic N6-furfuryladenosine (kinetin-riboside) induces rapid ATP depletion, genotoxic stress, and CDKN1A(p21) upregulation in human cancer cell lines.

Authors:  Christopher M Cabello; Warner B Bair; Stephanie Ley; Sarah D Lamore; Sara Azimian; Georg T Wondrak
Journal:  Biochem Pharmacol       Date:  2008-12-24       Impact factor: 5.858

Review 4.  The Inside Story of Adenosine.

Authors:  Marcella Camici; Mercedes Garcia-Gil; Maria Grazia Tozzi
Journal:  Int J Mol Sci       Date:  2018-03-09       Impact factor: 5.923

5.  Adenosine deaminase activity modulation by some street drug: molecular docking simulation and experimental investigation.

Authors:  Massoud Amanlou; Ali-akbar Saboury; Roya Bazl; Mohammad Reza Ganjali; Shokoofeh Sheibani
Journal:  Daru       Date:  2014-05-02       Impact factor: 3.117

Review 6.  Emerging Role of Purine Metabolizing Enzymes in Brain Function and Tumors.

Authors:  Mercedes Garcia-Gil; Marcella Camici; Simone Allegrini; Rossana Pesi; Edoardo Petrotto; Maria Grazia Tozzi
Journal:  Int J Mol Sci       Date:  2018-11-14       Impact factor: 5.923

Review 7.  Purine-Metabolising Enzymes and Apoptosis in Cancer.

Authors:  Marcella Camici; Mercedes Garcia-Gil; Rossana Pesi; Simone Allegrini; Maria Grazia Tozzi
Journal:  Cancers (Basel)       Date:  2019-09-12       Impact factor: 6.639

  7 in total

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