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1.
Nat Commun ; 15(1): 4733, 2024 Jun 03.
Artículo en Inglés | MEDLINE | ID: mdl-38830951

RESUMEN

Polymyxins are gram-negative antibiotics that target lipid A, the conserved membrane anchor of lipopolysaccharide in the outer membrane. Despite their clinical importance, the molecular mechanisms underpinning polymyxin activity remain unresolved. Here, we use surface plasmon resonance to kinetically interrogate interactions between polymyxins and lipid A and derive a phenomenological model. Our analyses suggest a lipid A-catalyzed, three-state mechanism for polymyxins: transient binding, membrane insertion, and super-stoichiometric cluster accumulation with a long residence time. Accumulation also occurs for brevicidine, another lipid A-targeting antibacterial molecule. Lipid A modifications that impart polymyxin resistance and a non-bactericidal polymyxin derivative exhibit binding that does not evolve into long-lived species. We propose that transient binding to lipid A permeabilizes the outer membrane and cluster accumulation enables the bactericidal activity of polymyxins. These findings could establish a blueprint for discovery of lipid A-targeting antibiotics and provide a generalizable approach to study interactions with the gram-negative outer membrane.


Asunto(s)
Antibacterianos , Lípido A , Polimixina B , Resonancia por Plasmón de Superficie , Polimixina B/farmacología , Polimixina B/metabolismo , Lípido A/metabolismo , Lípido A/química , Antibacterianos/farmacología , Antibacterianos/química , Antibacterianos/metabolismo , Pruebas de Sensibilidad Microbiana , Membrana Externa Bacteriana/metabolismo , Membrana Externa Bacteriana/efectos de los fármacos , Cinética
2.
Neuroscience ; 543: 49-64, 2024 Apr 05.
Artículo en Inglés | MEDLINE | ID: mdl-38417539

RESUMEN

In males but not in females, brain derived neurotrophic factor (BDNF) plays an obligatory role in the onset and maintenance of neuropathic pain. Afferent terminals of injured peripheral nerves release colony stimulating factor (CSF-1) and other mediators into the dorsal horn. These transform the phenotype of dorsal horn microglia such that they express P2X4 purinoceptors. Activation of these receptors by neuron-derived ATP promotes BDNF release. This microglial-derived BDNF increases synaptic activation of excitatory dorsal horn neurons and decreases that of inhibitory neurons. It also alters the neuronal chloride gradient such the normal inhibitory effect of GABA is converted to excitation. By as yet undefined processes, this attenuated inhibition increases NMDA receptor function. BDNF also promotes the release of pro-inflammatory cytokines from astrocytes. All of these actions culminate in the increase dorsal horn excitability that underlies many forms of neuropathic pain. Peripheral nerve injury also alters excitability of structures in the thalamus, cortex and mesolimbic system that are responsible for pain perception and for the generation of co-morbidities such as anxiety and depression. The weight of evidence from male rodents suggests that this preferential modulation of excitably of supra-spinal pain processing structures also involves the action of microglial-derived BDNF. Possible mechanisms promoting the preferential release of BDNF in pain signaling structures are discussed. In females, invading T-lymphocytes increase dorsal horn excitability but it remains to be determined whether similar processes operate in supra-spinal structures. Despite its ubiquitous role in pain aetiology neither BDNF nor TrkB receptors represent potential therapeutic targets.


Asunto(s)
Factor Neurotrófico Derivado del Encéfalo , Neuralgia , Ratas , Animales , Femenino , Masculino , Ratas Sprague-Dawley , Factor Neurotrófico Derivado del Encéfalo/farmacología , Células del Asta Posterior , Asta Dorsal de la Médula Espinal , Neuralgia/tratamiento farmacológico , Hiperalgesia
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