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1.
Indian J Biochem Biophys ; 2014 Jun; 51(3): 244-252
Article in English | IMSEAR | ID: sea-154238

ABSTRACT

A quantitative structure-activity relationship (QSAR) study was performed on a series of indole amide analogues reported by Dai et al. [Bioorg Med Chem Lett (2003), 13, 1897-1901] to act as histone deacetylase (HDAC) inhibitors. The multiple regression analysis (MRA) revealed a model showing the significant dependence of the activity on molar refractivity (MR) and global topological charge index (GTCI) of the compounds, suggesting that inhibition of the HDAC by this series of compounds might involve the dispersion interaction with the receptor, where charge transfer between pairs of atoms might greatly help to polarize the molecule. The MRA results were then compared with those obtained by Guo et al. [Bioorg Med Chem (2005), 13, 5424-5434] by comparative molecular field analysis (CoMFA) and comparative molecular similarity indices analysis (CoMSIA). It was found that MRA gave as good results and had as good predictive ability as CoMFA and CoMSIA. Besides, MRA was also able to throw the light on the physicochemical properties of the molecules that were involved in drug-receptor interactions, while CoMFA and CoMSIA could not. The dispersion interaction between the molecule and the active site of the receptor is suggested to be the main interaction.


Subject(s)
Binding Sites , Histone Deacetylase Inhibitors/pharmacology , Histone Deacetylases/chemistry , Histone Deacetylases/metabolism , Humans , Hydroxamic Acids/chemistry , Models, Molecular , Molecular Structure , Protein Binding , Quantitative Structure-Activity Relationship , Regression Analysis
2.
Experimental & Molecular Medicine ; : 205-212, 2007.
Article in English | WPRIM | ID: wpr-90612

ABSTRACT

Checkpoint kinase 1 (Chk1) and Chk2 are effector kinases in the cellular DNA damage response and impairment of their function is closely related to tumorigenesis. Previous studies revealed several substrate proteins of Chk1 and Chk2, but identification of additional targets is still important in order to understand their tumor suppressor functions. In this study, we screened novel substrates for Chk1 and Chk2 using substrate target motifs determined previously by an oriented peptide library approach. The potential candidates were selected by genome-wide peptide database searches and were examined by in vitro kinase assays. ST5, HDAC5, PGC-1alpha, PP2A PR130, FANCG, GATA3, cyclin G, Rad51D and MAD1alpha were newly identified as in vitro substrates for Chk1 and/or Chk2. Among these, HDAC5 and PGC-1alpha were further analyzed to substantiate the screening results. Immunoprecipitation kinase assay of full-length proteins and site-directed mutagenesis analysis of the target motifs demonstrated that HDAC5 and PGC-1alpha were specific targets for Chk1 and/or Chk2 at least in vitro.


Subject(s)
Humans , Amino Acid Motifs , Amino Acid Sequence , Consensus Sequence , Genome, Human/genetics , Heat-Shock Proteins/chemistry , Histone Deacetylases/chemistry , Molecular Sequence Data , Peptide Fragments/chemistry , Phosphorylation , Phosphoserine/metabolism , Protein Kinases/metabolism , Protein Serine-Threonine Kinases/metabolism , Substrate Specificity , Transcription Factors/chemistry
3.
Journal of Huazhong University of Science and Technology (Medical Sciences) ; (6): 572-4, 2004.
Article in English | WPRIM | ID: wpr-634189

ABSTRACT

In order to examine the strong anticancer action and low toxicity of Trichostatin A (TSA), the effect of TSA was examined on the growth inhibition, acetylation of histone H3 and apoptosis in HL-60 cells by employing MTT, immunocytochemical techniques, and Annexin-V-FITC/ PI assay. Our results showed that TSA could inhibit proliferation of HL- 60 cells in a time- and dose-dependent manner, and the IC50 at the 36th h was 100 ng/ml. The apoptosis-inducing effect of TSA on HL-60 cells was also time- and dose-dependent. But it didn't demonstrate apparent apoptosis induction in NPBMNCs within specific dose and time range. Both of the acetylation of histone H3 in HL-60 cells and NPBMNCs increased significantly (P0.05). It is concluded that TSA can inhibit growth and induce apoptosis of HL-60 cells in a time- and dose-dependent manner, and is able to selectively induce apoptosis in HL-60 cells but does not respond in NPBMNCs under the same conditions. The difference of TSA between HL-60 cells and NPBMNCs can't be explained by the regulation of histone acetylation.


Subject(s)
Acetylation , Antineoplastic Agents/pharmacology , Apoptosis/drug effects , HL-60 Cells , Histone Deacetylases/antagonists & inhibitors , Histone Deacetylases/chemistry , Hydroxamic Acids/pharmacology
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