| Literature DB >> 19086895 |
M Arif1, Suman Kalyan Pradhan, G R Thanuja, B M Vedamurthy, Shipra Agrawal, Dipak Dasgupta, Tapas K Kundu.
Abstract
Dysfunction of histone acetyltransferases (HATs) leads to several diseases including cancer, diabetes, and asthma. Therefore, small molecule inhibitors and activators of HATs are being considered as new generation therapeutics. Here, we report the molecular mechanisms of p300 HAT inhibition by specific and nonspecific HAT inhibitors: garcinol, isogarcinol, and 1 (LTK14). The p300 specific HAT inhibitor 1 behaves as a noncompetitive inhibitor for both acetyl-CoA and histone, unlike nonspecific HAT inhibitors garcinol and isogarcinol. The isothermal calorimetric data suggest that there is a high affinity enthalpy driven single binding site for 1 on p300HAT domain in contrast to two binding sites for garcinol and isogarcinol. Furthermore, the precise nature of molecular interactions was determined by using fluorescence, docking, and mutational studies. On the basis of these observations, we have proposed the mechanisms of specific versus nonspecific HAT inhibition by these small molecule compounds, which may be useful to design therapeutically favorable HAT inhibitors.Entities:
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Year: 2009 PMID: 19086895 DOI: 10.1021/jm800657z
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446