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1.
Int J Mol Sci ; 20(5)2019 Feb 26.
Artículo en Inglés | MEDLINE | ID: mdl-30813632

RESUMEN

HslVU is an ATP-dependent proteolytic complex present in certain bacteria and in the mitochondrion of some primordial eukaryotes, including deadly parasites such as Leishmania. It is formed by the dodecameric protease HslV and the hexameric ATPase HslU, which binds via the C-terminal end of its subunits to HslV and activates it by a yet unclear allosteric mechanism. We undertook the characterization of HslV from Leishmania major (LmHslV), a trypanosomatid that expresses two isoforms for HslU, LmHslU1 and LmHslU2. Using a novel and sensitive peptide substrate, we found that LmHslV can be activated by peptides derived from the C-termini of both LmHslU1 and LmHslU2. Truncations, Ala- and D-scans of the C-terminal dodecapeptide of LmHslU2 (LmC12-U2) showed that five out of the six C-terminal residues of LmHslU2 are essential for binding to and activating HslV. Peptide cyclisation with a lactam bridge allowed shortening of the peptide without loss of potency. Finally, we found that dodecapeptides derived from HslU of other parasites and bacteria are able to activate LmHslV with similar or even higher efficiency. Importantly, using electron microscopy approaches, we observed that the activation of LmHslV was accompanied by a large conformational remodeling, which represents a yet unidentified layer of control of HslV activation.


Asunto(s)
Leishmania major/enzimología , Péptidos/farmacología , Serina Endopeptidasas/metabolismo , Secuencia de Aminoácidos , Activación Enzimática/efectos de los fármacos , Péptidos/química , Estructura Secundaria de Proteína , Proteínas Recombinantes/aislamiento & purificación , Serina Endopeptidasas/química , Especificidad por Sustrato
2.
Eur J Med Chem ; 63: 869-81, 2013 May.
Artículo en Inglés | MEDLINE | ID: mdl-23603046

RESUMEN

9-[2-(Thiophosphonomethoxy)ethyl]adenine [S-PMEA, 8] and (R)-9-[2-(Thiophosphonomethoxy)propyl]adenine [S-PMPA, 9] are acyclic nucleoside thiophosphonates we described recently that display the same antiviral spectrum (DNA viruses) as approved and potent phosphonates PMEA and (R)-PMPA. Here, we describe the synthesis, antiviral activities in infected cell cultures and decomposition study of bis(pivaloyloxymethoxy)-S-PMEA [Bis-POM-S-PMEA, 13] and bis(isopropyloxymethylcarbonyl)-S-PMPA [Bis-POC-S-PMPA, 14] as orally bioavailable prodrugs of the S-PMEA 8 and S-PMPA 9, in comparison to the equivalent "non-thio" derivatives [Bis-POM-PMEA, 11] and [Bis-POC-PMPA, 12]. Compounds 11, 12, 13 and 14 were evaluated for their in vitro antiviral activity against HIV-1-, HIV-2-, HBV- and a broad panel of DNA viruses, and found to exhibit moderate to potent antiviral activity. In order to determine the decomposition pathway of the prodrugs 11, 12, 13 and 14 into parent compounds PMEA, PMPA, 8 and 9, kinetic data and decomposition pathways in several media are presented. As expected, bis-POM-S-PMEA 13 and bis-POC-S-PMPA 14 behaved as prodrugs of S-PMEA 8 and S-PMPA 9. However, thiophosphonates 8 and 9 were released very smoothly in cell extracts, in contrast to the release of PMEA and PMPA from "non-thio" prodrugs 11 and 12.


Asunto(s)
Antivirales/farmacología , Organofosfonatos/farmacología , Organotiofosfonatos/farmacología , Profármacos/farmacología , Antivirales/síntesis química , Antivirales/química , Línea Celular Tumoral , Supervivencia Celular/efectos de los fármacos , Virus ADN/efectos de los fármacos , Relación Dosis-Respuesta a Droga , Ésteres/síntesis química , Ésteres/química , Ésteres/farmacología , VIH-1/efectos de los fármacos , VIH-2/efectos de los fármacos , Virus de la Hepatitis B/efectos de los fármacos , Humanos , Modelos Químicos , Estructura Molecular , Nucleósidos/química , Organofosfonatos/síntesis química , Organofosfonatos/química , Organotiofosfonatos/síntesis química , Organotiofosfonatos/química , Profármacos/síntesis química , Profármacos/química
3.
J Med Chem ; 55(5): 2227-41, 2012 Mar 08.
Artículo en Inglés | MEDLINE | ID: mdl-22257077

RESUMEN

Drug delivery to the central nervous system is hindered by the presence of physiological barriers such as the blood-brain barrier. To accomplish the task of nutrient transport, the brain endothelium is endowed with various transport systems, including receptor-mediated transcytosis (RMT). This system can be used to shuttle therapeutics into the central nervous system (CNS) in a noninvasive manner. Therefore, the low-density lipoprotein receptor (LDLR) is a relevant target for delivering drugs. From an initial phage display biopanning, a series of peptide ligands for the LDLR was optimized leading to size reduction and improved receptor binding affinity with the identification of peptide 22 and its analogues. Further real-time biphoton microscopy experiments on living mice demonstrated the ability of peptide 22 to efficiently and quickly cross CNS physiological barriers. This validation of peptide 22 led us to explore its binding on the extracellular LDLR domain from an NMR-oriented structural study and docking experiments.


Asunto(s)
Barrera Hematoencefálica/metabolismo , Oligopéptidos/síntesis química , Péptidos Cíclicos/síntesis química , Receptores de LDL/metabolismo , Médula Espinal/metabolismo , Animales , Colorantes Fluorescentes , Humanos , Ligandos , Espectroscopía de Resonancia Magnética , Ratones , Ratones Endogámicos C57BL , Modelos Moleculares , Oligopéptidos/química , Oligopéptidos/farmacocinética , Péptidos Cíclicos/química , Péptidos Cíclicos/farmacocinética , Relación Estructura-Actividad , Transcitosis
4.
Eur J Med Chem ; 46(9): 4281-8, 2011 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-21803462

RESUMEN

9-[2-(Thiophosphonomethoxy)ethyl]adenine 3 and (R)-9-[2-(Thiophosphonomethoxy)propyl]adenine 4 were synthesized as the first thiophosphonate nucleosides bearing a sulfur atom at the α-position of the acyclic nucleoside phosphonates PMEA and PMPA. Thiophosphonates S-PMEA 3 and S-PMPA 4 were evaluated for in vitro activity against HIV-1 (subtypes A to G), HIV-2 and HBV-infected cells, and found to exhibit potent antiretroviral activity. We showed that their diphosphate forms S-PMEApp 5 and S-PMPApp 6 are readily incorporated by wild-type (WT) HIV-1 RT into DNA and act as DNA chain terminators. Compounds 3 and 4 were evaluated for in vitro activity against a broad panel of DNA and RNA viruses and displayed beside HIV a moderate activity against herpes simplex virus and vaccinia viruses. In order to measure enzymatic stabilities of the target derivatives 3 and 4, kinetic data and decomposition pathways were studied at 37 °C in several media.


Asunto(s)
Antivirales/farmacología , VIH-1/efectos de los fármacos , Virus de la Hepatitis B/efectos de los fármacos , Organofosfonatos/farmacología , Replicación Viral/efectos de los fármacos , Línea Celular , Cromatografía Líquida de Alta Presión , Estabilidad de Medicamentos , VIH-1/fisiología , Virus de la Hepatitis B/fisiología , Humanos , Espectroscopía de Resonancia Magnética , Organofosfonatos/química , Organofosfonatos/farmacocinética , Espectrometría de Masa Bombardeada por Átomos Veloces
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