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1.
Chem Biol Drug Des ; 86(1): 114-21, 2015 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-25359714

RESUMEN

Continuing our search to find more potent and selective 5-LOX inhibitors, we present now the enzymatic evaluation of seventeen isoflavones (IR) and nine isoflavans (HIR), and their in vitro and in cellulo potency against human leukocyte 5-LOX. Of the 26 compounds tested, 10 isoflavones and 9 isoflavans possessed micromolar potency, but only three were selective against 5-LOX (IR-2, HIR-303, and HIR-309), with IC50 values at least 10 times lower than those of 12-LOX, 15-LOX-1, and 15-LOX-2. Of these three, IR-2 (6,7-dihydroxy-4-methoxy-isoflavone, known as texasin) was the most selective 5-LOX inhibitor, with over 80-fold potency difference compared with other isozymes; Steered Molecular Dynamics (SMD) studies supported these findings. The presence of the catechol group on ring A (6,7-dihydroxy versus 7,8-dihydroxy) correlated with their biological activity, but the reduction of ring C, converting the isoflavones to isoflavans, and the substituent positions on ring B did not affect their potency against 5-LOX. Two of the most potent/selective inhibitors (HIR-303 and HIR-309) were reductive inhibitors and were potent against 5-LOX in human whole blood, indicating that isoflavans can be potent and selective inhibitors against human leukocyte 5-LOX in vitro and in cellulo.


Asunto(s)
Araquidonato 5-Lipooxigenasa , Flavonoides , Leucocitos/enzimología , Inhibidores de la Lipooxigenasa , Simulación de Dinámica Molecular , Animales , Araquidonato 5-Lipooxigenasa/química , Araquidonato 5-Lipooxigenasa/metabolismo , Flavonoides/síntesis química , Flavonoides/química , Flavonoides/farmacología , Humanos , Inhibidores de la Lipooxigenasa/síntesis química , Inhibidores de la Lipooxigenasa/química , Inhibidores de la Lipooxigenasa/farmacología , Ovinos
2.
Biochemistry ; 52(45): 8026-35, 2013 Nov 12.
Artículo en Inglés | MEDLINE | ID: mdl-24171444

RESUMEN

Lipoxygenases, important enzymes in inflammation, can regulate their substrate specificity by allosteric interactions with their own hydroperoxide products. In this work, addition of both 13-(S)-hydroxy-(9Z,11E)-octadecadienoic acid [13-(S)-HODE] and 13-(S)-hydroperoxy-(6Z,9Z,11E)-octadecatrienoic acid to human epithelial 15-lipoxygenase-2 (15-LOX-2) increases the kcat/KM substrate specificity ratio of arachidonic acid (AA) and γ-linolenic acid (GLA) by 4-fold. 13-(S)-HODE achieves this change by activating kcat/KM(AA) but inhibiting kcat/KM(GLA), which indicates that the allosteric structural changes at the active site discriminate between the length and unsaturation differences of AA and GLA to achieve opposite kinetic effects. The substrate specificity ratio is further increased, 11-fold in total, with an increase in pH, suggesting mechanistic differences between the pH and allosteric effects. Interestingly, the loss of the PLAT domain affects substrate specificity but does not eliminate the allosteric properties of 15-LOX-2, indicating that the allosteric site is located in the catalytic domain. However, the removal of the PLAT domain does change the magnitude of the allosteric effect. These data suggest that the PLAT domain moderates the communication pathway between the allosteric and catalytic sites, thus affecting substrate specificity. These results are discussed in the context of protein dimerization and other structural changes.


Asunto(s)
Araquidonato 15-Lipooxigenasa/química , Araquidonato 15-Lipooxigenasa/metabolismo , Sitio Alostérico , Humanos , Concentración de Iones de Hidrógeno , Cinética , Especificidad por Sustrato
3.
PLoS One ; 8(6): e65928, 2013.
Artículo en Inglés | MEDLINE | ID: mdl-23826084

RESUMEN

We report the discovery of a novel dual inhibitor targeting fungal sterol 14α-demethylase (CYP51 or Erg11) and human 5-lipoxygenase (5-LOX) with improved potency against 5-LOX due to its reduction of the iron center by its phenylenediamine core. A series of potent 5-LOX inhibitors containing a phenylenediamine core, were synthesized that exhibit nanomolar potency and >30-fold selectivity against the LOX paralogs, platelet-type 12-human lipoxygenase, reticulocyte 15-human lipoxygenase type-1, and epithelial 15-human lipoxygenase type-2, and >100-fold selectivity against ovine cyclooxygenase-1 and human cyclooxygnease-2. The phenylenediamine core was then translated into the structure of ketoconazole, a highly effective anti-fungal medication for seborrheic dermatitis, to generate a novel compound, ketaminazole. Ketaminazole was found to be a potent dual inhibitor against human 5-LOX (IC50 = 700 nM) and CYP51 (IC50 = 43 nM) in vitro. It was tested in whole blood and found to down-regulate LTB4 synthesis, displaying 45% inhibition at 10 µM. In addition, ketaminazole selectively inhibited yeast CYP51 relative to human CYP51 by 17-fold, which is greater selectivity than that of ketoconazole and could confer a therapeutic advantage. This novel dual anti-fungal/anti-inflammatory inhibitor could potentially have therapeutic uses against fungal infections that have an anti-inflammatory component.


Asunto(s)
Antifúngicos/farmacología , Araquidonato 5-Lipooxigenasa/efectos de los fármacos , Hongos/enzimología , Inhibidores de la Lipooxigenasa/farmacología , Esterol 14-Desmetilasa/efectos de los fármacos , Humanos , Concentración 50 Inhibidora , Leucotrieno B4/antagonistas & inhibidores
4.
Chem Biol Drug Des ; 82(3): 317-25, 2013 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-23663316

RESUMEN

In this study, we have investigated 16 isoflavone and isoflavan derivatives as potential inhibitors of human lipoxygenase (platelet 12-lipoxygenase, reticulocyte 15-lipoxygenase-1, and epithelial 15-lipoxygenase-2). The flavonoid baicalein, a known lipoxygenase inhibitor, was used as positive control. Four compounds, 6,7-dihydroxy-3'-chloroisoflavone (1c), 7-hydroxy-8-methyl-4'-chloroisoflavan (5a), 7,8-dihydroxy-4'-methylisoflavan (5b), and 7,8-dihydroxy-3'-methylisoflavan (5c), were effective inhibitors of 12-lipoxygenases and 15-lipoxygenase-1 with IC50 's <10 µm, while 6,7-dihydroxy-4'-nitroisoflavone (1b) was a selective inhibitor of 12-lipoxygenases. Docking studies, antioxidant assays, and kinetic measurements were carried out for the three best inhibitors (1b, 5b, 5c). The results showed that a catechol group in ring A is critical for the antioxidant properties of these compounds, and probably essential for their inhibitory activity. Kinetic assays showed that compounds 1b, 5b, and 5c are competitive inhibitors with Ki values in the range of 0.3-3 µm.


Asunto(s)
Antioxidantes/química , Araquidonato 12-Lipooxigenasa/química , Araquidonato 15-Lipooxigenasa/química , Isoflavonas/química , Inhibidores de la Lipooxigenasa/química , Antioxidantes/síntesis química , Antioxidantes/metabolismo , Araquidonato 12-Lipooxigenasa/metabolismo , Araquidonato 15-Lipooxigenasa/metabolismo , Sitios de Unión , Humanos , Isoflavonas/síntesis química , Isoflavonas/metabolismo , Cinética , Inhibidores de la Lipooxigenasa/síntesis química , Inhibidores de la Lipooxigenasa/metabolismo , Simulación del Acoplamiento Molecular , Unión Proteica , Estructura Terciaria de Proteína , Relación Estructura-Actividad
5.
Bioorg Med Chem ; 21(13): 3894-9, 2013 Jul 01.
Artículo en Inglés | MEDLINE | ID: mdl-23669189

RESUMEN

Understanding the mode of action for lipoxygenase (LOX) inhibitors is critical to determining their efficacy in the cell. The pseudoperoxidase assay is an important tool for establishing if a LOX inhibitor is reductive in nature, however, there have been difficulties identifying the proper conditions for each of the many human LOX isozymes. In the current paper, both the 234 nM decomposition (UV) and iron-xylenol orange (XO) assays are shown to be effective methods of detecting pseudoperoxidase activity for 5-LOX, 12-LOX, 15-LOX-1 and 15-LOX-2, but only if 13-(S)-HPODE is used as the hydroperoxide substrate. The AA products, 12-(S)-HPETE and 15-(S)-HPETE, are not consistent hydroperoxide substrates since they undergo a competing transformation to the di-HETE products. Utilizing the above conditions, the selective 12-LOX and 15-LOX-1 inhibitors, probes for diabetes, stroke and asthma, are characterized for their inhibitory nature. Interestingly, ascorbic acid also supports the pseudoperoxidase assay, suggesting that it may have a role in maintaining the inactive ferrous form of LOX in the cell. In addition, it is observed that nordihydroguaiaretic acid (NDGA), a known reductive LOX inhibitor, appears to generate radical species during the pseudoperoxidase assay, which are potent inhibitors against the human LOX isozymes, producing a negative pseudoperoxidase result. Therefore, inhibitors that do not support the pseudoperoxidase assay with the human LOX isozymes, should also be investigated for rapid inactivation, to clarify the negative pseudoperoxidase result.


Asunto(s)
Pruebas de Enzimas/métodos , Peróxido de Hidrógeno/metabolismo , Inhibidores de la Lipooxigenasa/química , Inhibidores de la Lipooxigenasa/farmacología , Lipooxigenasas/metabolismo , Humanos , Ácidos Linoleicos/metabolismo , Peróxidos Lipídicos/metabolismo , Oxidación-Reducción , Peroxidasa/metabolismo , Fenoles/metabolismo , Sulfóxidos/metabolismo
6.
J Med Chem ; 53(20): 7392-404, 2010 Oct 28.
Artículo en Inglés | MEDLINE | ID: mdl-20866075

RESUMEN

There are a variety of lipoxygenases in the human body (hLO), each having a distinct role in cellular biology. Human reticulocyte 15-lipoxygenase-1 (15-hLO-1), which catalyzes the dioxygenation of 1,4-cis,cis-pentadiene-containing polyunsaturated fatty acids, is implicated in a number of diseases including cancer, atherosclerosis, and neurodegenerative conditions. Despite the potential therapeutic relevance of this target, few inhibitors have been reported that are both potent and selective. To this end, we have employed a quantitative high-throughput (qHTS) screen against ∼74000 small molecules in search of reticulocyte 15-hLO-1 selective inhibitors. This screen led to the discovery of a novel chemotype for 15-hLO-1 inhibition, which displays nM potency and is >7500-fold selective against the related isozymes, 5-hLO, platelet 12-hLO, epithelial 15-hLO-2, ovine cyclooxygenase-1, and human cyclooxygenase-2. In addition, kinetic experiments were performed which indicate that this class of inhibitor is tight binding, reversible, and appears not to reduce the active-site ferric ion.


Asunto(s)
Inhibidores de la Lipooxigenasa , Oxadiazoles/síntesis química , Reticulocitos/enzimología , Alquinos/síntesis química , Alquinos/química , Araquidonato 15-Lipooxigenasa/química , Benzoatos/síntesis química , Benzoatos/química , Sitios de Unión , Ésteres , Humanos , Cinética , Modelos Moleculares , Naftalenos/síntesis química , Naftalenos/química , Oxadiazoles/química , Bibliotecas de Moléculas Pequeñas , Relación Estructura-Actividad , Sulfuros/síntesis química , Sulfuros/química , Tiofenos/síntesis química , Tiofenos/química
7.
J Nat Prod ; 72(10): 1857-63, 2009 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-19848434

RESUMEN

Enzyme screening of crude sponge extracts prioritized a 2005 Papua New Guinea collection of Hyrtios sp. for further study. The MeOH extract contained puupehenone and four puupehenone analogues (1, 2, 3, 5, and 7) along with a new diastereomer, 20-epi-hydroxyhaterumadienone (4), and a new analogue, 15-oxo-puupehenoic acid (6). The drimane terpene core of 4 and 6 was rapidly dereplicated, and the modified Mosher's method identified 4, while 1D and 2D NMR techniques were used to solve 6. These compounds plus noteworthy repository natural products and standards were tested against three lipoxygenase isozymes, human 5-, 12-, and 15-lipoxygenases. Significant potency and selectivity profiles were exhibited in the human 5-lipoxygenase assay by puupehenone (1) and jaspaquinol (9) and structural factors responsible for activity identified.


Asunto(s)
Inhibidores de la Lipooxigenasa/química , Inhibidores de la Lipooxigenasa/farmacología , Poríferos/química , Sesquiterpenos/química , Sesquiterpenos/farmacología , Xantonas/química , Xantonas/farmacología , Animales , Plaquetas/enzimología , Diterpenos/química , Diterpenos/farmacología , Humanos , Estructura Molecular , Resonancia Magnética Nuclear Biomolecular , Papúa Nueva Guinea , Reticulocitos/enzimología , Estereoisomerismo , Terpenos/química
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