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1.
RSC Chem Biol ; 1(4): 281-287, 2020 Oct 01.
Artículo en Inglés | MEDLINE | ID: mdl-34458766

RESUMEN

In biological systems, polar interactions are heavily burdened by high desolvation penalties resulting from strong solute-solvent interactions. As a consequence thereof, enthalpic contributions of hydrogen bonds to the free energy of binding are severely diminished. However, this effect is strongly attenuated for interactions within solvent-shielded areas of proteins. In microcalorimetric experiments, we show that the bacterial lectin FimH utilizes conformational adaptions to effectively shield its binding site from solvent. The transition into a lower dielectric environment results in an enthalpic benefit of approximately -13 kJ mol-1 for mannoside binding. However, this effect can be abrogated, if the hydrogen bond network within the binding site is disturbed by deoxygenation of the ligand. Conformational adaption leading to reduced local dielectric constants could represent a general mechanism for proteins to enable enthalpy-driven recognition of polar ligands.

2.
ChemMedChem ; 14(7): 749-757, 2019 04 03.
Artículo en Inglés | MEDLINE | ID: mdl-30710416

RESUMEN

Antimicrobial resistance has become a serious concern for the treatment of urinary tract infections. In this context, an anti-adhesive approach targeting FimH, a bacterial lectin enabling the attachment of E. coli to host cells, has attracted considerable interest. FimH can adopt a low/medium-affinity state in the absence and a high-affinity state in the presence of shear forces. Until recently, mostly the high-affinity state has been investigated, despite the fact that a therapeutic antagonist should bind predominantly to the low-affinity state. In this communication, we demonstrate that fluorination of biphenyl α-d-mannosides leads to compounds with perfect π-π stacking interactions with the tyrosine gate of FimH, yielding low nanomolar to sub-nanomolar KD values for the low- and high-affinity states, respectively. The face-to-face alignment of the perfluorinated biphenyl group of FimH ligands and Tyr48 was confirmed by crystal structures as well as 1 H,15 N-HSQC NMR analysis. Finally, fluorination improves pharmacokinetic parameters predictive for oral availability.


Asunto(s)
Antibacterianos/farmacología , Escherichia coli/efectos de los fármacos , Proteínas Fimbrias/antagonistas & inhibidores , Adhesinas de Escherichia coli/química , Adhesinas de Escherichia coli/metabolismo , Antibacterianos/administración & dosificación , Antibacterianos/química , Antibacterianos/farmacocinética , Adhesión Bacteriana/efectos de los fármacos , Cristalografía por Rayos X , Relación Dosis-Respuesta a Droga , Diseño de Fármacos , Escherichia coli/metabolismo , Proteínas Fimbrias/química , Proteínas Fimbrias/metabolismo , Polarización de Fluorescencia , Espectroscopía de Resonancia Magnética , Manósidos/administración & dosificación , Manósidos/química , Manósidos/farmacocinética , Manósidos/farmacología , Conformación Proteica , Electricidad Estática , Tirosina/metabolismo
3.
Chemistry ; 24(49): 13049-13057, 2018 Sep 03.
Artículo en Inglés | MEDLINE | ID: mdl-29939458

RESUMEN

Affinity data, such as dissociation constants (KD ) or inhibitory concentrations (IC50 ), are widely used in drug discovery. However, these parameters describe an equilibrium state, which is often not established in vivo due to pharmacokinetic effects and they are therefore not necessarily sufficient for evaluating drug efficacy. More accurate indicators for pharmacological activity are the kinetics of binding processes, as they shed light on the rate of formation of protein-ligand complexes and their half-life. Nonetheless, although highly desirable for medicinal chemistry programs, studies on structure-kinetic relationships (SKR) are still rare. With the recently introduced analytical tool kinITC this situation may change, since not only thermodynamic but also kinetic information of the binding process can be deduced from isothermal titration calorimetry (ITC) experiments. Using kinITC, ITC data of 29 mannosides binding to the bacterial adhesin FimH were re-analyzed to make their binding kinetics accessible. To validate these kinetic data, surface plasmon resonance (SPR) experiments were conducted. The kinetic analysis by kinITC revealed that the nanomolar affinities of the FimH antagonists arise from both (i) an optimized interaction between protein and ligand in the bound state (reduced off-rate constant koff ) and (ii) a stabilization of the transition state or a destabilization of the unbound state (increased on-rate constant kon ). Based on congeneric ligand modifications and structural input from co-crystal structures, a strong relationship between the formed hydrogen-bond network and koff could be concluded, whereas electrostatic interactions and conformational restrictions upon binding were found to have mainly an impact on kon .


Asunto(s)
Adhesinas de Escherichia coli/química , Proteínas Fimbrias/química , Manósidos/química , Calorimetría/métodos , Descubrimiento de Drogas , Proteínas Fimbrias/antagonistas & inhibidores , Enlace de Hidrógeno , Cinética , Ligandos , Modelos Moleculares , Unión Proteica , Conformación Proteica , Dominios Proteicos , Relación Estructura-Actividad , Termodinámica
4.
Chem Sci ; 9(3): 646-654, 2018 Jan 21.
Artículo en Inglés | MEDLINE | ID: mdl-29629131

RESUMEN

Seven-membered ring mimetics of mannose were studied as ligands for the mannose-specific bacterial lectin FimH, which plays an essential role in the first step of urinary tract infections (UTI). A competitive binding assay and isothermal titration calorimetry (ITC) experiments indicated an approximately ten-fold lower affinity for the seven-membered ring mannose mimetic 2-O-n-heptyl-1,6-anhydro-d-glycero-d-galactitol (7) compared to n-heptyl α-d-mannopyranoside (2), resulting exclusively from a loss of conformational entropy. Investigations by solution NMR, X-ray crystallography, and molecular modeling revealed that 7 establishes a superimposable H-bond network compared to mannoside 2, but at the price of a high entropic penalty due to the loss of its pronounced conformational flexibility. These results underscore the importance of having access to the complete thermodynamic profile of a molecular interaction to "rescue" ligands from entropic penalties with an otherwise perfect fit to the protein binding site.

5.
IUCrJ ; 4(Pt 1): 7-23, 2017 Jan 01.
Artículo en Inglés | MEDLINE | ID: mdl-28250938

RESUMEN

The most prevalent diseases manifested by Escherichia coli are acute and recurrent bladder infections and chronic inflammatory bowel diseases such as Crohn's disease. E. coli clinical isolates express the FimH adhesin, which consists of a mannose-specific lectin domain connected via a pilin domain to the tip of type 1 pili. Although the isolated FimH lectin domain has affinities in the nanomolar range for all high-mannosidic glycans, differentiation between these glycans is based on their capacity to form predominantly hydrophobic interactions within the tyrosine gate at the entrance to the binding pocket. In this study, novel crystal structures of tyrosine-gate mutants of FimH, ligand-free or in complex with heptyl α-d-O-mannopyranoside or 4-biphenyl α-d-O-mannopyranoside, are combined with quantum-mechanical calculations and molecular-dynamics simulations. In the Y48A FimH crystal structure, a large increase in the dynamics of the alkyl chain of heptyl α-d-O-mannopyranoside attempts to compensate for the absence of the aromatic ring; however, the highly energetic and stringent mannose-binding pocket of wild-type FimH is largely maintained. The Y137A mutation, on the other hand, is the most detrimental to FimH affinity and specificity: (i) in the absence of ligand the FimH C-terminal residue Thr158 intrudes into the mannose-binding pocket and (ii) ethylenediaminetetraacetic acid interacts strongly with Glu50, Thr53 and Asn136, in spite of multiple dialysis and purification steps. Upon mutation, pre-ligand-binding relaxation of the backbone dihedral angles at position 137 in the tyrosine gate and their coupling to Tyr48 via the interiorly located Ile52 form the basis of the loss of affinity of the FimH adhesin in the Y137A mutant.

6.
Chembiochem ; 18(6): 539-544, 2017 03 16.
Artículo en Inglés | MEDLINE | ID: mdl-28076665

RESUMEN

Uropathogenic E. coli exploit PapG-II adhesin for infecting host cells of the kidney; the expression of PapG-II at the tip of bacterial pili correlates with the onset of pyelonephritis in humans, a potentially life-threatening condition. It was envisaged that blocking PapG-II (and thus bacterial adhesion) would provide a viable therapeutic alternative to conventional antibiotic treatment. In our search for potent PapG-II antagonists, we observed an increase in affinity when tetrasaccharide 1, the natural ligand of PapG-II in human kidneys, was elongated to hexasaccharide 2, even though the additional Siaα(2-3)Gal extension is not in direct contact with the lectin. ITC studies suggest that the increased affinity results from partial desolvation of nonbinding regions of the hexasaccharide; this is ultimately responsible for perturbation of the outer hydration layers. Our results are in agreement with previous observations and suggest a general mechanism for modulating carbohydrate-protein interactions based on nonbinding regions of the ligand.


Asunto(s)
Adhesinas Bacterianas/metabolismo , Adhesinas de Escherichia coli/química , Metabolismo de los Hidratos de Carbono , Proteínas Fimbrias/química , Lectinas/metabolismo , Adhesinas Bacterianas/química , Sitios de Unión , Carbohidratos/química , Cristalografía por Rayos X , Humanos , Simulación de Dinámica Molecular , Pielonefritis/microbiología , Pielonefritis/fisiopatología
7.
Chembiochem ; 16(8): 1235-46, 2015 May 26.
Artículo en Inglés | MEDLINE | ID: mdl-25940742

RESUMEN

Urinary tract infections caused by uropathogenic E. coli are among the most prevalent infectious diseases. The mannose-specific lectin FimH mediates the adhesion of the bacteria to the urothelium, thus enabling host cell invasion and recurrent infections. An attractive alternative to antibiotic treatment is the development of FimH antagonists that mimic the physiological ligand. A large variety of candidate drugs have been developed and characterized by means of in vitro studies and animal models. Here we present the X-ray co-crystal structures of FimH with members of four antagonist classes. In three of these cases no structural data had previously been available. We used NMR spectroscopy to characterize FimH-antagonist interactions further by chemical shift perturbation. The analysis allowed a clear determination of the conformation of the tyrosine gate motif that is crucial for the interaction with aglycone moieties and was not obvious from X-ray structural data alone. Finally, ITC experiments provided insight into the thermodynamics of antagonist binding. In conjunction with the structural information from X-ray and NMR experiments the results provide a mechanism for the often-observed enthalpy-entropy compensation of FimH antagonists that plays a role in fine-tuning of the interaction.


Asunto(s)
Adhesinas de Escherichia coli/química , Escherichia coli K12 , Proteínas Fimbrias/química , Tirosina , Adhesinas de Escherichia coli/metabolismo , Cristalografía por Rayos X , Proteínas Fimbrias/antagonistas & inhibidores , Proteínas Fimbrias/metabolismo , Espectroscopía de Resonancia Magnética , Modelos Moleculares , Estructura Secundaria de Proteína
8.
J Med Chem ; 58(5): 2221-39, 2015 Mar 12.
Artículo en Inglés | MEDLINE | ID: mdl-25666045

RESUMEN

Urinary tract infections (UTIs), predominantly caused by uropathogenic Escherichia coli (UPEC), belong to the most prevalent infectious diseases worldwide. The attachment of UPEC to host cells is mediated by FimH, a mannose-binding adhesin at the tip of bacterial type 1 pili. To date, UTIs are mainly treated with antibiotics, leading to the ubiquitous problem of increasing resistance against most of the currently available antimicrobials. Therefore, new treatment strategies are urgently needed. Here, we describe the development of an orally available FimH antagonist. Starting from the carboxylate substituted biphenyl α-d-mannoside 9, affinity and the relevant pharmacokinetic parameters (solubility, permeability, renal excretion) were substantially improved by a bioisosteric approach. With 3'-chloro-4'-(α-d-mannopyranosyloxy)biphenyl-4-carbonitrile (10j) a FimH antagonist with an optimal in vitro PK/PD profile was identified. Orally applied, 10j was effective in a mouse model of UTI by reducing the bacterial load in the bladder by about 1000-fold.


Asunto(s)
Antibacterianos/farmacología , Compuestos de Bifenilo/farmacología , Infecciones por Escherichia coli/tratamiento farmacológico , Proteínas Fimbrias/antagonistas & inhibidores , Manósidos/farmacología , Infecciones Urinarias/tratamiento farmacológico , Escherichia coli Uropatógena/efectos de los fármacos , Adhesinas de Escherichia coli , Administración Oral , Animales , Antibacterianos/administración & dosificación , Antibacterianos/química , Antibacterianos/farmacocinética , Compuestos de Bifenilo/química , Compuestos de Bifenilo/farmacocinética , Células CACO-2 , Permeabilidad de la Membrana Celular/efectos de los fármacos , Cristalografía por Rayos X , Diseño de Fármacos , Infecciones por Escherichia coli/microbiología , Femenino , Citometría de Flujo , Humanos , Técnicas In Vitro , Manósidos/administración & dosificación , Manósidos/química , Manósidos/farmacocinética , Ratones , Ratones Endogámicos C3H , Estereoisomerismo , Relación Estructura-Actividad , Distribución Tisular , Infecciones Urinarias/microbiología
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