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1.
Sci Rep ; 13(1): 9161, 2023 06 06.
Artículo en Inglés | MEDLINE | ID: mdl-37280236

RESUMEN

Proteases encoded by SARS-CoV-2 constitute a promising target for new therapies against COVID-19. SARS-CoV-2 main protease (Mpro, 3CLpro) and papain-like protease (PLpro) are responsible for viral polyprotein cleavage-a process crucial for viral survival and replication. Recently it was shown that 2-phenylbenzisoselenazol-3(2H)-one (ebselen), an organoselenium anti-inflammatory small-molecule drug, is a potent, covalent inhibitor of both the proteases and its potency was evaluated in enzymatic and antiviral assays. In this study, we screened a collection of 34 ebselen and ebselen diselenide derivatives for SARS-CoV-2 PLpro and Mpro inhibitors. Our studies revealed that ebselen derivatives are potent inhibitors of both the proteases. We identified three PLpro and four Mpro inhibitors superior to ebselen. Independently, ebselen was shown to inhibit the N7-methyltransferase activity of SARS-CoV-2 nsp14 protein involved in viral RNA cap modification. Hence, selected compounds were also evaluated as nsp14 inhibitors. In the second part of our work, we employed 11 ebselen analogues-bis(2-carbamoylaryl)phenyl diselenides-in biological assays to evaluate their anti-SARS-CoV-2 activity in Vero E6 cells. We present their antiviral and cytoprotective activity and also low cytotoxicity. Our work shows that ebselen, its derivatives, and diselenide analogues constitute a promising platform for development of new antivirals targeting the SARS-CoV-2 virus.


Asunto(s)
COVID-19 , SARS-CoV-2 , Humanos , SARS-CoV-2/metabolismo , Metiltransferasas , Péptido Hidrolasas , Antivirales/farmacología , Antivirales/metabolismo , Cisteína Endopeptidasas/metabolismo , Inhibidores de Proteasas/farmacología , Simulación del Acoplamiento Molecular
2.
J Med Chem ; 66(3): 2054-2063, 2023 02 09.
Artículo en Inglés | MEDLINE | ID: mdl-36661843

RESUMEN

Screening of 25 analogs of Ebselen, diversified at the N-aromatic residue, led to the identification of the most potent inhibitors of Sporosarcina pasteurii urease reported to date. The presence of a dihalogenated phenyl ring caused exceptional activity of these 1,2-benzisoselenazol-3(2H)-ones, with Ki value in a low picomolar range (<20 pM). The affinity was attributed to the increased π-π and π-cation interactions of the dihalogenated phenyl ring with αHis323 and αArg339 during the initial step of binding. Complementary biological studies with selected compounds on the inhibition of ureolysis in whole Proteus mirabilis cells showed a very good potency (IC50 < 25 nM in phosphate-buffered saline (PBS) buffer and IC90 < 50 nM in a urine model) for monosubstituted N-phenyl derivatives. The crystal structure of S. pasteurii urease inhibited by one of the most active analogs revealed the recurrent selenation of the Cys322 thiolate, yielding an unprecedented Cys322-S-Se-Se chemical moiety.


Asunto(s)
Inhibidores Enzimáticos , Ureasa , Inhibidores Enzimáticos/farmacología , Inhibidores Enzimáticos/química , Bacterias/metabolismo , Isoindoles/farmacología , Azoles/farmacología
3.
Int J Mol Sci ; 22(22)2021 Nov 14.
Artículo en Inglés | MEDLINE | ID: mdl-34830189

RESUMEN

Laccase from pathogenic fungi participates in both the delignification and neutralization of phytoantibiotics. Furthermore, it interferes with the hormone signaling in plants and catalyzes melanization. Infections of these pathogens contribute to loss in forestry, agriculture, and horticulture. As there is still a need to expand knowledge on efficient defense strategies against phytopathogenic fungi, the present study aimed to reveal more information on the molecular mechanisms of laccase inhibition with natural and natural-like carboxylic acid semi-synthetic derivatives. A set of hydrazide-hydrazones derived from carboxylic acids, generally including electron-rich arene units that serve as a decoy substrate, was synthesized and tested with laccase from Trametes versicolor. The classic synthesis of the title inhibitors proceeded with good to almost quantitative yield. Ninety percent of the tested molecules were active in the range of KI = 8-233 µM and showed different types of action. Such magnitude of inhibition constants qualified the hydrazide-hydrazones as strong laccase inhibitors. Molecular docking studies supporting the experimental data explained the selected derivatives' interactions with the enzyme. The results are promising in developing new potential antifungal agents mitigating the damage scale in the plant cultivation, gardening, and horticulture sectors.


Asunto(s)
Inhibidores Enzimáticos/farmacología , Proteínas Fúngicas/antagonistas & inhibidores , Hidrazinas/farmacología , Lacasa/antagonistas & inhibidores , Fenoles/farmacología , Polyporaceae/enzimología , Biocatálisis/efectos de los fármacos , Dominio Catalítico , Inhibidores Enzimáticos/química , Inhibidores Enzimáticos/metabolismo , Proteínas Fúngicas/química , Proteínas Fúngicas/metabolismo , Hidrazinas/química , Hidrazinas/metabolismo , Cinética , Lacasa/química , Lacasa/metabolismo , Modelos Químicos , Simulación del Acoplamiento Molecular , Estructura Molecular , Fenoles/química , Fenoles/metabolismo , Enfermedades de las Plantas/microbiología , Polyporaceae/patogenicidad , Relación Estructura-Actividad
4.
Sci Rep ; 11(1): 3640, 2021 02 11.
Artículo en Inglés | MEDLINE | ID: mdl-33574416

RESUMEN

An efficient treatment against a COVID-19 disease, caused by the novel coronavirus SARS-CoV-2 (CoV2), remains a challenge. The papain-like protease (PLpro) from the human coronavirus is a protease that plays a critical role in virus replication. Moreover, CoV2 uses this enzyme to modulate the host's immune system to its own benefit. Therefore, it represents a highly promising target for the development of antiviral drugs. We used Approximate Bayesian Computation tools, molecular modelling and enzyme activity studies to identify highly active inhibitors of the PLpro. We discovered organoselenium compounds, ebselen and its structural analogues, as a novel approach for inhibiting the activity of PLproCoV2. Furthermore, we identified, for the first time, inhibitors of PLproCoV2 showing potency in the nanomolar range. Moreover, we found a difference between PLpro from SARS and CoV2 that can be correlated with the diverse dynamics of their replication, and, putatively to disease progression.


Asunto(s)
Antivirales/farmacología , Azoles/farmacología , Proteasas Similares a la Papaína de Coronavirus/antagonistas & inhibidores , Simulación del Acoplamiento Molecular , Compuestos de Organoselenio/farmacología , Inhibidores de Proteasas/farmacología , Antivirales/química , Azoles/química , Sitios de Unión , Proteasas Similares a la Papaína de Coronavirus/química , Proteasas Similares a la Papaína de Coronavirus/metabolismo , Isoindoles , Compuestos de Organoselenio/química , Inhibidores de Proteasas/química , Unión Proteica
5.
Molecules ; 25(5)2020 Mar 10.
Artículo en Inglés | MEDLINE | ID: mdl-32164357

RESUMEN

A series of hydrazide-hydrazones 1-3, the imine derivatives of hydrazides and aldehydes bearing benzene rings, were screened as inhibitors of laccase from Trametes versicolor. Laccase is a copper-containing enzyme which inhibition might prevent or reduce the activity of the plant pathogens that produce it in various biochemical processes. The kinetic and molecular modeling studies were performed and for selected compounds, the docking results were discussed. Seven 4-hydroxybenzhydrazide (4-HBAH) derivatives exhibited micromolar activity Ki = 24-674 µM with the predicted and desirable competitive type of inhibition. The structure-activity relationship (SAR) analysis revealed that a slim salicylic aldehyde framework had a pivotal role in stabilization of the molecules near the substrate docking site. Furthermore, the presence of phenyl and bulky tert-butyl substituents in position 3 in salicylic aldehyde fragment favored strong interaction with the substrate-binding pocket in laccase. Both 3- and 4-HBAH derivatives containing larger 3-tert-butyl-5-methyl- or 3,5-di-tert-butyl-2-hydroxy-benzylidene unit, did not bind to the active site of laccase and, interestingly, acted as non-competitive (Ki = 32.0 µM) or uncompetitive (Ki = 17.9 µM) inhibitors, respectively. From the easily available laccase inhibitors only sodium azide, harmful to environment and non-specific, was over 6 times more active than the above compounds.


Asunto(s)
Hidrazonas/química , Hidrazonas/farmacología , Lacasa/antagonistas & inhibidores , Trametes/química , Dominio Catalítico , Hidroxibenzoatos/química , Hidroxibenzoatos/farmacología , Cinética , Azida Sódica/química , Relación Estructura-Actividad
6.
Oncotarget ; 9(50): 29365-29378, 2018 Jun 29.
Artículo en Inglés | MEDLINE | ID: mdl-30034623

RESUMEN

The potent transcription inhibitor Actinomycin D is used with several cancers. Here, we report the discovery that this naturally occurring antibiotic inhibits two human neutral aminopeptidases, the cell-surface alanine aminopeptidase and intracellular methionine aminopeptidase type 2. These metallo-containing exopeptidases participate in tumor cell expansion and motility and are targets for anticancer therapies. We show that the peptide portions of Actinomycin D and Actinomycin X2 are not required for effective inhibition, but the loss of these regions changes the mechanism of interaction. Two structurally less complex Actinomycin D analogs containing the phenoxazone chromophores, Questiomycin A and Actinocin, appear to be competitive inhibitors of both aminopeptidases, with potencies similar to the non-competitive macrocyclic parent compound (Ki in the micromolar range). The mode of action for all four compounds and both enzymes was demonstrated by molecular modeling and docking in the corresponding active sites. This knowledge gives new perspectives to Actinomycin D's action on tumors and suggests new avenues and molecules for medical applications.

7.
Molecules ; 22(6)2017 Jun 12.
Artículo en Inglés | MEDLINE | ID: mdl-28604620

RESUMEN

A reaction of bis[(2-chlorocarbonyl)phenyl] diselenide with various mono and bisnucleophiles such as aminophenols, phenols, and amines have been studied as a convenient general route to a series of new antimicrobial and antiviral diphenyl diselenides. The compounds, particularly bis[2-(hydroxyphenylcarbamoyl)]phenyl diselenides and reference benzisoselenazol-3(2H)-ones, exhibited high antimicrobial activity against Gram-positive bacterial species (Enterococcus spp., Staphylococcus spp.), and some compounds were also active against Gram-negative E. coli and fungi (Candida spp., A.niger). The majority of compounds demonstrated high activity against human herpes virus type 1 (HHV-1) and moderate activity against encephalomyocarditis virus (EMCV), while they were generally inactive against vesicular stomatitis virus (VSV).


Asunto(s)
Antiinfecciosos/farmacología , Antifúngicos/farmacología , Antivirales/farmacología , Derivados del Benceno/farmacología , Compuestos de Organoselenio/farmacología , Aminas/síntesis química , Aminas/química , Aminofenoles/síntesis química , Aminofenoles/química , Antiinfecciosos/síntesis química , Antiinfecciosos/química , Antifúngicos/síntesis química , Antifúngicos/química , Antioxidantes/síntesis química , Antioxidantes/química , Antivirales/síntesis química , Antivirales/química , Derivados del Benceno/síntesis química , Derivados del Benceno/química , Candida/efectos de los fármacos , Candida/patogenicidad , Escherichia coli/efectos de los fármacos , Escherichia coli/patogenicidad , Herpesvirus Humano 1/efectos de los fármacos , Herpesvirus Humano 1/patogenicidad , Humanos , Pruebas de Sensibilidad Microbiana , Compuestos de Organoselenio/síntesis química , Compuestos de Organoselenio/química , Fenoles/síntesis química , Fenoles/química
8.
Bioorg Med Chem Lett ; 26(21): 5254-5259, 2016 11 01.
Artículo en Inglés | MEDLINE | ID: mdl-27692546

RESUMEN

A collection of twenty-six organoselenium compounds, ebselen and its structural analogues, provided a novel approach for inhibiting the activity of human methionine aminopeptidase 2 (MetAP2). This metalloprotease, being responsible for the removal of the amino-terminal methionine from newly synthesized proteins, plays a key role in angiogenesis, which is essential for the progression of diseases, including solid tumor cancers. In this work, we discovered that ebselen, a synthetic organoselenium drug molecule with anti-inflammatory, anti-oxidant and cytoprotective activity, inhibits one of the main enzymes in the tumor progression pathway. Using three-step synthesis, we obtained twenty-five ebselen derivatives/analogues, ten of which are new, and tested their inhibitory activity toward three neutral aminopeptidases (MetAP2, alanine and leucine aminopeptidases). All of the tested compounds proved to be selective, slow-binding inhibitors of MetAP2. Similarly to ebselen, most of its analogues exhibited a moderate potency (IC50=1-12µM). Moreover, we identified three strong inhibitors that bind favorably to the enzyme with the half maximal inhibitory concentration in the submicromolar range.


Asunto(s)
Aminopeptidasas/antagonistas & inhibidores , Azoles/farmacología , Metaloendopeptidasas/antagonistas & inhibidores , Compuestos de Organoselenio/farmacología , Inhibidores de Proteasas/farmacología , Azoles/química , Humanos , Concentración 50 Inhibidora , Isoindoles , Modelos Moleculares , Compuestos de Organoselenio/química , Relación Estructura-Actividad
9.
Pharmaceuticals (Basel) ; 9(3)2016 Jul 08.
Artículo en Inglés | MEDLINE | ID: mdl-27399725

RESUMEN

The organo-seleniumdrug ebselen exhibits a wide range of pharmacological effects that are predominantly due to its interference with redox systems catalyzed by seleno enzymes, e.g., glutathione peroxidase and thioredoxin reductase. Moreover, ebselen can covalently interact with thiol groups of several enzymes. According to its pleiotropic mode of action, ebselen has been investigated in clinical trials for the prevention and treatment of different ailments. Fluorescence-labeled probes containing ebselen are expected to be suitable for further biological and medicinal studies. We therefore designed and synthesized two coumarin-tagged activity-based probes bearing the ebselen warhead. The heterodimers differ by the nature of the spacer structure, for which-in the second compound-a PEG/two-amide spacer was introduced. The interaction of this probe and of ebselen with two cysteine proteases was investigated.

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