ArticleJCI insight2022
Intact mitochondrial substrate efflux is essential for prevention of tubular injury in a sex-dependent manner.
Article in JCI insight, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed, 13 citations in OpenAlex.
- MTDH inhibits CrAT to promote mitochondrial damage in palmitic acid-induced renal tubular cells.Acta diabetologica · 2026Article
- Sex Differences in Renal Mitochondrial Respiration and H2O2 Emission in Young Dahl Salt-Sensitive Rats.Function (Oxford, England) · 2025Article
- Mitochondrial DNA variants in the pathogenesis and metabolic alterations of diabetes mellitus.Molecular genetics and metabolism reports · 2025Review
- Persistent subclinical renal injury in female rats following renal ischemia-reperfusion injury.Clinical science (London, England : 1979) · 2025Article
- Article
- An update on the role of sex hormones in the function of the cardiorenal mitochondria.Biochemical Society transactions · 2024Review
- Renal Epithelial Mitochondria: Implications for Hypertensive Kidney Disease.Comprehensive Physiology · 2023Article
- Activation of GPER1 in macrophages ameliorates UUO-induced renal fibrosis.Cell death & disease · 2023Article
- Lysosomal glucose sensing and glycophagy in metabolism.Trends in endocrinology and metabolism: TEM · 2023Review
- Characterizing the metabolic response of the zebrafish kidney to overfeeding.American journal of physiology. Renal physiology · 2023Article
- Redox regulation in diabetic kidney disease.American journal of physiology. Renal physiology · 2023Review
Corrections and comments
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Authors and funding
11 authors at 4 institutions in 3 countries.
Funding
Abstract
The importance of healthy mitochondrial function is implicated in the prevention of chronic kidney disease (CKD) and diabetic kidney disease (DKD). Sex differences also play important roles in DKD. Our previous studies revealed that mitochondrial substrate overload (modeled by homozygous deletion of carnitine acetyl-transferase [CrAT]) in proximal tubules causes renal injury. Here, we demonstrate the importance of intact mitochondrial substrate efflux by titrating the amount of overload through the generation of a heterozygous CrAT-KO model (PT-CrATHET mouse). Intriguingly, these animals developed renal injury similarly to their homozygous counterparts. Mitochondria were structurally and functionally impaired in both sexes. Transcriptomic analyses, however, revealed striking sex differences. Male mice shut down fatty acid oxidation and several other metabolism-related pathways. Female mice had a significantly weaker transcriptional response in metabolism, but activation of inflammatory pathways was prominent. Proximal tubular cells from PT-CrATHET mice of both sexes exhibited a shift toward a more glycolytic phenotype, but female mice were still able to oxidize fatty acid-based substrates. Our results demonstrate that maintaining mitochondrial substrate metabolism balance is crucial to satisfying proximal tubular energy demand. Our findings have potentially broad implications, as both the glycolytic shift and the sexual dimorphisms discovered herein offer potentially new modalities for future interventions for treating kidney disease.
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Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.