| Literature DB >> 29538414 |
Hala O El-Mesallamy1, Hekmat M El Magdoub2, James M Chapman3, Nadia M Hamdy1, Mona F Schaalan2, Lamiaa N Hammad2, Sondra H Berger3.
Abstract
Thymidylate synthase (TS) is a well-validated target for the therapy of adult cancers. Propane-1,3-diphosphonic acid (PDPA) has significant inhibitory properties against human thymidylate synthase (hTS) relative to mouse TS which is not predicted to adopt an inactive conformer. The current research aims to identify novel, lead inhibitors of hTS and examine the prediction that they bind selectively to hTS enzymes existing in different conformational equilibria. Conformer-selectivity was evaluated through performing activity inhibition studies, as well as intrinsic fluorescence (IF) studies in comparison to the known orthosteric inhibitor raltitrexed (RTX). Human TS was isolated from recombinant bacteria expressing either native hTS, capable of conformational switching, or an actively stabilized mutant (R163K-hTS). The examined test compounds were rationally or virtually predicted to have inhibitory activity against hTS. Among these compounds, glutarate, N-(4-carboxyphenyl) succinamic acid, and diglycolic anhydride showed higher selectivity towards native hTS as compared to R163K-hTS. The active site inhibitor RTX showed significantly higher inhibition of R163K-hTS relative to hTS. Targeting hTS via conformational selectivity represents a future approach for overcoming reported resistance towards active-state TS analogs.Entities:
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Year: 2018 PMID: 29538414 PMCID: PMC5851609 DOI: 10.1371/journal.pone.0193810
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1The examined test compounds for TS inhibition, their reference numbers, structures, and manufactures.
Effect of 1, 3, and 10 mM of different test compounds on hTS % activity.
| Cpd. # / Conc. | 1 mM | 3 mM | 10 mM | |
|---|---|---|---|---|
| 100 ± 2.27 | ||||
| 80.6 | 0.53 | 0.93 | ||
| 84.3 | 33.5 | 0.70 | ||
| 76.8 | 0.20 | 0.17 | ||
| 77.8 | 1.67 | 0.57 | ||
| 84.7 | 69.7 | 0.17 | ||
| 84.7 | 71.0 | 0.40 | ||
| 83.5 | 73.3 | 0.57 | ||
Values represent hTS activity in presence of different concentrations of selected test compounds as % activity of control. The control value represents hTS enzyme activity in the absence of any of the test compounds. The data are the means of 3 separate determinations of the slopes of the activity versus time.
* Significant difference from control, at P ≤ 0.05.
¥ Significant difference from compounds (5), (6) and (7) at the same concentration (3 mM), at P ≤ 0.05.
‡ Significant difference from compounds (1), (3) and (4) at the same concentration (3 mM), at P ≤ 0.05.
Effect of 1, 2, 3 and 10 mM of compounds (1), (2), (3) and (4) on hTS versus R163K-hTS % activity.
| Cpd. # Conc. | 1 mM | 3 mM | 10 mM | |
|---|---|---|---|---|
| % Activity Mean ± SD | ||||
| 80.4 ± 5.20 | 0.25 ± 0.43 | 0.66 ± 1.22 | ||
| 99.9 | 57.4 | 0.39 ± 0.53 | ||
| 84.2 ± 5.25 | 34.2 ± 2.98 | 0.30 ± 0.58 | ||
| 94.3 | 50.3 | -0.54 ± 0.90 | ||
| 76.9 ± 4.94 | 0.17 ± 0.86 | 0.96 ± 1.75 | ||
| 76.0 ± 4.21 | 27.0 | 0.19 ± 0.86 | ||
| 77.3 ±3.54 | 0.89 ± 0.42 | 0.26 ± 1.10 | ||
| 100.5 | 47.1 | -0.25 ± 1.15 | ||
Values represent enzyme activity as % of control in presence of different concentrations of selected test compounds. The data are the means of 3 separate determinations.
@ Significant difference from hTS, at the same concentration, at p ≤ 0.05.
Effect of different concentrations of RTX on hTS versus R163K-hTS % activity.
| RTX conc. / TS conformer | hTS | R163K-hTS | |
|---|---|---|---|
| 100.0 ± 6.84 | 100.0 ± 5.84 | ||
| 81.6 | 55.3 | ||
| 57.7 | 35.2 | ||
| 30.1 | 16.7 | ||
| 5.9 | 4.4 | ||
Values represent enzyme activity as % of control in presence of different concentrations of RTX. Control values represent enzyme activities in the absence of any of the test compounds. Values are the means of 3 separate determinations.
*Significant difference from its control, at p ≤ 0.05.
@Significant difference from hTS using the same concentration of RTX, at p ≤ 0.05.
Effect of 1, 2, 3 and 10 mM of compounds (1), (2), (3) and (4) on % ΔF of hTS versus R163K-hTS.
| Cpd. # Conc. | 1 mM | 2 mM | 3 mM | 10 mM | |
|---|---|---|---|---|---|
| %ΔF Mean± SD | |||||
| 12.2 ± 1.12 | 48.2 | 53.6 | 59.9 ± 2.14 | ||
| 3.1 | 50.6 | 55.0 | 61.7 | ||
| 7.4 ± 0.46 | 12.9 ± 1.12 | 37.1 ± 0.70 | 56.0 ± 5.92 | ||
| 0.37 ± 0.29 | 0.53 | 26.8 | 53.1 ± 2.50 | ||
| 21.2 | 43.0 | 73.4 | 95.2 | ||
| 24.4 | 45.0 | 77.2 | 90.8 | ||
| 13.7 ± 2.65 | 45.7 | 49.6 | 52.8 ± 1.68 | ||
| 3.5 | 46.8 | 47.5 | 52.0 | ||
Values represent % ΔF of hTS from its control in presence of different concentrations compounds (1), (2), (3) and (4). The data are the means of 3 separate determinations.
Significant difference from hTS at the same concentration, at p ≤ 0.05.
a Significant difference from compound (1) on hTS at same concentration, at p ≤ 0.05.
b Significant difference from compound (2) on hTS at same concentration, at p ≤ 0.05.
c Significant difference from compound (4) on hTS at same concentration, at p ≤ 0.05.
d Significant difference from compound (1) on R163K-hTS at same concentration, at p ≤ 0.05.
e Significant difference from compound (2) on R163K-hTS at same concentration, at p ≤ 0.05.
f Significant difference from compound (4) on R163K-hTS at same concentration, at p ≤ 0.05
Fig 2Effect of different concentrations of compounds (1), (2), (3) and (4) on IF of hTS.
Controls contained the enzyme in buffer without any of the test compounds, while blanks were performed using buffer only.
Fig 3Effect of different concentrations of compounds (1), (2), (3) and (4) on IF of R163K-hTS.
Controls contained the enzyme in buffer without any of the test compounds, while blanks were performed using buffer only.
Effect of different concentrations of RTX on % ΔF of hTS versus R163K-hTS.
| Conc. / TS conformer | hTS | R163K-hTS | |
|---|---|---|---|
| 4.4 ± 0.53 | 6.1 ± 0.51 | ||
| 8.8 ± 0.64 | 15.4 | ||
| 18.9 ± 2.99 | 31.6 | ||
| 33.4 ± 5.72 | 57.4 | ||
Values represent % ΔF of hTS versus that of R163K-hTS in presence of different concentrations of RTX. The data are the means of 3 separate determinations.
Significant difference from hTS at the same RTX concentration, at p ≤ 0.05.
Fig 4Correlation between activity inhibition and IF studies of compounds (1), (2), (3) and (4) on hTS.
Fig 5Correlation between activity inhibition and IF studies of compounds (1), (2), (3) and (4) on R163K-hTS.