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1.
Nat Commun ; 15(1): 1897, 2024 Mar 01.
Artículo en Inglés | MEDLINE | ID: mdl-38429282

RESUMEN

Kidney filtration is ensured by the interaction of podocytes, endothelial and mesangial cells. Immunoglobulin accumulation at the filtration barrier is pathognomonic for glomerular injury. The mechanisms that regulate filter permeability are unknown. Here, we identify a pivotal role for the proteasome in a specific cell type. Combining genetic and inhibitor-based human, pig, mouse, and Drosophila models we demonstrate that the proteasome maintains filtration barrier integrity, with podocytes requiring the constitutive and glomerular endothelial cells the immunoproteasomal activity. Endothelial immunoproteasome deficiency as well as proteasome inhibition disrupt the filtration barrier in mice, resulting in pathologic immunoglobulin deposition. Mechanistically, we observe reduced endocytic activity, which leads to altered membrane recycling and endocytic receptor turnover. This work expands the concept of the (immuno)proteasome as a control protease orchestrating protein degradation and antigen presentation and endocytosis, providing new therapeutic targets to treat disease-associated glomerular protein accumulations.


Asunto(s)
Enfermedades Renales , Complejo de la Endopetidasa Proteasomal , Ratones , Humanos , Animales , Porcinos , Células Endoteliales , Glomérulos Renales/patología , Enfermedades Renales/patología , Endocitosis , Inmunoglobulinas
2.
Nat Commun ; 15(1): 1679, 2024 Feb 23.
Artículo en Inglés | MEDLINE | ID: mdl-38396035

RESUMEN

Tauopathies such as Alzheimer's disease are characterized by aggregation and increased phosphorylation of the microtubule-associated protein tau. Tau's pathological changes are closely linked to neurodegeneration, making tau a prime candidate for intervention. We developed an approach to monitor pathological changes of aggregation-prone human tau in living neurons. We identified 2-phenyloxazole (PHOX) derivatives as putative polypharmacological small molecules that interact with tau and modulate tau kinases. We found that PHOX15 inhibits tau aggregation, restores tau's physiological microtubule interaction, and reduces tau phosphorylation at disease-relevant sites. Molecular dynamics simulations highlight cryptic channel-like pockets crossing tau protofilaments and suggest that PHOX15 binding reduces the protofilament's ability to adopt a PHF-like conformation by modifying a key glycine triad. Our data demonstrate that live-cell imaging of a tauopathy model enables screening of compounds that modulate tau-microtubule interaction and allows identification of a promising polypharmacological drug candidate that simultaneously inhibits tau aggregation and reduces tau phosphorylation.


Asunto(s)
Enfermedad de Alzheimer , Tauopatías , Humanos , Tauopatías/tratamiento farmacológico , Tauopatías/metabolismo , Proteínas tau/metabolismo , Microtúbulos/metabolismo , Enfermedad de Alzheimer/metabolismo , Citoesqueleto/metabolismo , Fosforilación
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