RRC ID 87162
著者 Yuan Y, Yuan L, Yang J, Liu F, Liu S, Li L, Liao G, Tang X, Cheng J, Liu J, Chen Y, Lu Y.
タイトル Autophagy-deficient macrophages exacerbate cisplatin-induced mitochondrial dysfunction and kidney injury via miR-195a-5p-SIRT3 axis.
ジャーナル Nat Commun
Abstract Macrophages (Mφ) autophagy is a pivotal contributor to inflammation-related diseases. However, the mechanistic details of its direct role in acute kidney injury (AKI) were unclear. Here, we show that Mφ promote AKI progression via crosstalk with tubular epithelial cells (TECs), and autophagy of Mφ was activated and then inhibited in cisplatin-induced AKI mice. Mφ-specific depletion of ATG7 (Atg7Δmye) aggravated kidney injury in AKI mice, which was associated with tubulointerstitial inflammation. Moreover, Mφ-derived exosomes from Atg7Δmye mice impaired TEC mitochondria in vitro, which may be attributable to miR-195a-5p enrichment in exosomes and its interaction with SIRT3 in TECs. Consistently, either miR-195a-5p inhibition or SIRT3 overexpression improved mitochondrial bioenergetics and renal function in vivo. Finally, adoptive transfer of Mφ from AKI mice to Mφ-depleted mice promotes the kidney injury response to cisplatin, which is alleviated when Mφ autophagy is activated with trehalose. We conclude that exosomal miR-195a-5p mediate the communication between autophagy-deficient Mφ and TECs, leading to impaired mitochondrial biogenetic in TECs and subsequent exacerbation of kidney injury in AKI mice via miR-195a-5p-SIRT3 axis.
巻・号 15(1)
ページ 4383
公開日 2024-5-23
DOI 10.1038/s41467-024-47842-z
PII 10.1038/s41467-024-47842-z
PMID 38782909
PMC PMC11116430
MeSH Acute Kidney Injury* / chemically induced Acute Kidney Injury* / genetics Acute Kidney Injury* / metabolism Acute Kidney Injury* / pathology Animals Autophagy* / drug effects Autophagy-Related Protein 7 / genetics Autophagy-Related Protein 7 / metabolism Cisplatin* / pharmacology Disease Models, Animal Epithelial Cells / drug effects Epithelial Cells / metabolism Exosomes / metabolism Humans Kidney / metabolism Kidney / pathology Kidney Tubules / metabolism Kidney Tubules / pathology Macrophages* / drug effects Macrophages* / metabolism Male Mice Mice, Inbred C57BL MicroRNAs* / genetics MicroRNAs* / metabolism Mitochondria* / drug effects Mitochondria* / metabolism Sirtuin 3* / genetics Sirtuin 3* / metabolism Trehalose / pharmacology
リソース情報
実験動物マウス RBRC02759