| Literature DB >> 26458144 |
Lindsay E Evans1, Matthew D Cheeseman1, Norhakim Yahya1, Keith Jones1.
Abstract
The use of chemical tools to validate clinical targets has gained in popularity over recent years and the importance of understanding the activity, selectivity and mechanism of action of these compounds is well recognized. Dysregulation of the HSP70 protein family has been linked to multiple cancer types and drug resistance, highlighting their importance as popular targets for anti-cancer drug development. Apoptozole is a recently identified small molecule, which has been reported to possess strong affinity for the HSP70 isoforms HSP72 and HSC70. We investigated apoptozole as a potential chemical tool for HSP70 inhibition. Unfortunately, using both biochemical and biophysical techniques, we were unable to find any experimental evidence that apoptozole binds to HSP70 in a specific and developable way. Instead, we provide experimental evidence that apoptozole forms aggregates under aqueous conditions that could interact with HSP70 proteins in a non-specific manner.Entities:
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Year: 2015 PMID: 26458144 PMCID: PMC4601772 DOI: 10.1371/journal.pone.0140006
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1Chemical structure[26] and summary of physical properties and reported biochemical and cellular activity of apoptozole [25].
Fig 2Competitive displacement curves for ATP-FAM and HSP72 with ATP, ADP, VER-155008 and apoptozole.
IC50 values are the geometric mean and pIC50 values are the geometric mean ± SEM from 3 independent measurements.
Fig 3Chemical synthesis of apoptozole and derivatives.
Reagents and conditions: i) NH4OAc, AcOH, 100°C, 16 hr; ii) N-Boc-3,6-dioxa-1,8-octanediamine, HBTU, DIPEA, DCM, rt, 5 hr; iii) 1:1 DMC/TFA, rt, 2 hr; iv) 5-FAM NHS ester, NEt3, DMF, rt, 16 hr; v) Cy5 NHS ester, NEt3, DMF, rt, 16 hr; vi) Biotin-derivative 7, HBTU, DIPEA, DMF, rt, 1 hr; vii) Succinic anhydride, DIPEA, MeCN, 30°C, 16 hr, then N-boc-3,6-dioxa-1,8-octanediamine, HBTU, DIPEA, DMF, 35°C, 16 hr; viii) 1:1 DCM/TFA, rt, 16 hr.
Fig 4Binding isotherms for ATP-FAM, ATP-Cy5, apoptozole-FAM and apoptozole-Cy5 with HSP72.
KD values are the geometric mean and pKD values are the geometric mean ± SEM from 3 independent measurements.
Fig 5SPR sensorgrams of HSP72 interacting with biotinylated apoptozole 4 immobilised on a neutravidin derivatised CM5 sensor chip.
(A) Human HSP72, control subtracted data; (B) Rat HSP72, control subtracted data.
Fig 6SPR sensorgram of human HSP72 interacting with CM5 sensor chip immobilised with apoptozole derivative 6.
Dynamic light scattering analysis of apoptozole and VER-155008.
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| N/A | - | 4.5 ± 1.2 | 18.3 ± 0.6 |
| N/A | + | 58.3 ± 3.5 | 221.5 ± 13.8 | |
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| N/A | - | 60.5 ± 0.1 | 1694.3 ± 29.5 |
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| 10 | - | 521.5 ± 30.9 | 1441.1 ± 186.5 |
| 10 | + | 86.5 ± 2.1 | 2350.0 ± 173.1 | |
| 5 | - | 454.4 ± 36.4 | 1047.5 ± 183.1 | |
| 1 | - | 89.3 ± 5.8 | 132.6 ± 39.7 | |
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| 10 | - | 88.5 ± 8.3 | 63.2 ± 5.8 |
| 10 | + | 101.1 ± 9.0 | 318.2 ± 61.3 | |
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| N/A | - | 4.5 ± 1.2 | 18.3 ± 0.6 |
| N/A | + | 58.3 ± 3.5 | 221.5 ± 13.8 | |
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| N/A | - | 60.5 ± 0.1 | 1694.3 ± 29.5 |
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| 10 | - | 521.5 ± 30.9 | 1441.1 ± 186.5 |
| 10 | + | 86.5 ± 2.1 | 2350.0 ± 173.1 | |
| 5 | - | 454.4 ± 36.4 | 1047.5 ± 183.1 | |
| 1 | - | 89.3 ± 5.8 | 132.6 ± 39.7 | |
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| 10 | - | 88.5 ± 8.3 | 63.2 ± 5.8 |
| 10 | + | 101.1 ± 9.0 | 318.2 ± 61.3 |
Radius and intensity values are the arithmetic mean ± SEM from 3 independent experiments.