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1.
Sci Adv ; 10(25): eadk2299, 2024 06 21.
Artigo em Inglês | MEDLINE | ID: mdl-38896614

RESUMO

Noise-induced hearing loss (NIHL) is a common sensorineural hearing impairment that lacks U.S. Food and Drug Administration-approved drugs. To fill the gap in effective screening models, we used an in silico transcriptome-based drug screening approach, identifying 22 biological pathways and 64 potential small molecule treatments for NIHL. Two of these, afatinib and zorifertinib [epidermal growth factor receptor (EGFR) inhibitors], showed efficacy in zebrafish and mouse models. Further tests with EGFR knockout mice and EGF-morpholino zebrafish confirmed their protective role against NIHL. Molecular studies in mice highlighted EGFR's crucial involvement in NIHL and the protective effect of zorifertinib. When given orally, zorifertinib was found in the perilymph with favorable pharmacokinetics. In addition, zorifertinib combined with AZD5438 (a cyclin-dependent kinase 2 inhibitor) synergistically prevented NIHL in zebrafish. Our results underscore the potential for in silico transcriptome-based drug screening in diseases lacking efficient models and suggest EGFR inhibitors as potential treatments for NIHL, meriting clinical trials.


Assuntos
Receptores ErbB , Perda Auditiva Provocada por Ruído , Transcriptoma , Peixe-Zebra , Animais , Receptores ErbB/antagonistas & inibidores , Receptores ErbB/metabolismo , Receptores ErbB/genética , Camundongos , Perda Auditiva Provocada por Ruído/tratamento farmacológico , Perda Auditiva Provocada por Ruído/metabolismo , Perda Auditiva Provocada por Ruído/genética , Modelos Animais de Doenças , Simulação por Computador , Inibidores de Proteínas Quinases/farmacologia , Humanos , Avaliação Pré-Clínica de Medicamentos , Camundongos Knockout , Perfilação da Expressão Gênica
2.
J Biol Chem ; 295(29): 9804-9822, 2020 07 17.
Artigo em Inglês | MEDLINE | ID: mdl-32404366

RESUMO

Activation of lipid-burning pathways in the fat-storing white adipose tissue (WAT) is a promising strategy to improve metabolic health and reduce obesity, insulin resistance, and type II diabetes. For unknown reasons, bilirubin levels are negatively associated with obesity and diabetes. Here, using mice and an array of approaches, including MRI to assess body composition, biochemical assays to measure bilirubin and fatty acids, MitoTracker-based mitochondrial analysis, immunofluorescence, and high-throughput coregulator analysis, we show that bilirubin functions as a molecular switch for the nuclear receptor transcription factor peroxisome proliferator-activated receptor α (PPARα). Bilirubin exerted its effects by recruiting and dissociating specific coregulators in WAT, driving the expression of PPARα target genes such as uncoupling protein 1 (Ucp1) and adrenoreceptor ß 3 (Adrb3). We also found that bilirubin is a selective ligand for PPARα and does not affect the activities of the related proteins PPARγ and PPARδ. We further found that diet-induced obese mice with mild hyperbilirubinemia have reduced WAT size and an increased number of mitochondria, associated with a restructuring of PPARα-binding coregulators. We conclude that bilirubin strongly affects organismal body weight by reshaping the PPARα coregulator profile, remodeling WAT to improve metabolic function, and reducing fat accumulation.


Assuntos
Tecido Adiposo Branco/metabolismo , Bilirrubina/farmacologia , Regulação da Expressão Gênica/efeitos dos fármacos , Mitocôndrias/metabolismo , PPAR alfa/metabolismo , Animais , Bilirrubina/metabolismo , Camundongos , Receptores Adrenérgicos beta 3/biossíntese , Proteína Desacopladora 1/biossíntese
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