Literature DB >> 21757356

Evaluation of influence of Ap4A analogues on Fhit-positive HEK293T cells; cytotoxicity and ability to induce apoptosis.

Agnieszka Krakowiak1, Róża Pęcherzewska, Renata Kaczmarek, Agnieszka Tomaszewska, Barbara Nawrot, Wojciech J Stec.   

Abstract

Fragile histidine triad (Fhit) protein encoded by tumour suppressor FHIT gene is a proapoptotic protein with diadenosine polyphosphate (Ap(n)A, n=2-6) hydrolase activity. It has been hypothesised that formation of Fhit-substrate complex results in an apoptosis initiation signal while subsequent hydrolysis of Ap(n)A terminates this action. A series of Ap(n)A analogues have been identified in vitro as strong Fhit ligands [Varnum, J. M.; Baraniak, J.; Kaczmarek, R.; Stec, W. J.; Brenner, C. BMC Chem. Biol.2001, 1, 3]. We assumed that in Fhit-positive cells these compounds might preferentially bind to Fhit and inhibit its hydrolytic activity what would prolong the lifetime of apoptosis initiation signalling complex. Therefore, several Fhit inhibitors were tested for their cytotoxicity and ability to induce apoptosis in Fhit-positive HEK293T cells. These experiments have shown that Ap(4)A analogue, containing a glycerol residue instead of the central pyrophosphate and two terminal phosphorothioates [A(PS)-CH(2)CH(OH)CH(2)-(PS)A (1)], is the most cytotoxic among test compounds (IC(50)=17.5±4.2 μM) and triggers caspase-dependent cell apoptosis. The Fhit-negative HEK293T cells (in which Fhit was silenced by RNAi) were not sensitive to compound 1. These results indicate that the Ap(4)A analogue 1 induces Fhit-dependent apoptosis and therefore, it can be considered as a drug candidate for anticancer therapy in Fhit-positive cancer cells and in Fhit-negative cancer cells, in which re-expression of Fhit was accomplished by gene therapy.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21757356     DOI: 10.1016/j.bmc.2011.06.028

Source DB:  PubMed          Journal:  Bioorg Med Chem        ISSN: 0968-0896            Impact factor:   3.641


  2 in total

1.  Lysyl-tRNA synthetase produces diadenosine tetraphosphate to curb STING-dependent inflammation.

Authors:  J Guerra; A-L Valadao; D Vlachakis; K Polak; I K Vila; C Taffoni; T Prabakaran; A S Marriott; R Kaczmarek; A Houel; B Auzemery; S Déjardin; P Boudinot; B Nawrot; N J Jones; S R Paludan; S Kossida; C Langevin; N Laguette
Journal:  Sci Adv       Date:  2020-05-22       Impact factor: 14.136

2.  Activation state-dependent interaction between Gαq subunits and the Fhit tumor suppressor.

Authors:  Hao Zuo; Grace P W Chan; Jing Zhu; Wendy W S Yeung; Anthony S L Chan; Hermann Ammer; Yung H Wong
Journal:  Cell Commun Signal       Date:  2013-08-15       Impact factor: 5.712

  2 in total

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