Mechanism of HO-1 in alleviating sepsis-associated acute kidney injury via regulating mitochondrial proteostasis and targeted intervention with DNA nanomaterials

Sepsis-associated acute kidney injury (S-AKI) is a major driver of systemic mortality and chronic renal dysfunction, yet effective mechanism-based interventions are lacking. Clinical analysis revealed significant oxidative stress imbalance in patients with S-AKI, characterized by reduced serum SOD activity and GSH levels. Here, we show that a mitochondria-protective proteostasis axis centered on Heme Oxygenase-1 (HO-1) preserves tubular epithelial homeostasis by stabilizing NDUFA6, a critical subunit of mitochondrial complex I. Using HO-1 based immunoprecipitation–mass spectrometry (IP–MS), we identified NDUFA6 as a high affinity HO-1 binding partner, and further investigation revealed LTN1 as an E3 ligase regulating NDUFA6 turnover. Mechanistically, HO-1 interacted with NDUFA6 and preserved its stability by attenuating LTN1-mediated K48-linked ubiquitination, whereas LTN1 promoted ubiquitin-dependent degradation of NDUFA6. To translate these findings into a therapeutic strategy, we engineered a hexahedral DNA nanocage (DNA cube) functionalized with G4/Hemin. This platform demonstrated robust physicochemical stability, renal-specific accumulation, and mitochondrial-associated localization. In both CLP-induced S-AKI models and lipopolysaccharide-challenged HK-2 cells, the G4/Hemin-DNA cube significantly ameliorated renal injury, suppressing inflammation, oxidative stress, and mitochondrial-mediated apoptosis. Notably, these therapeutic benefits were largely abolished by HO-1 knockdown. Our study establishes an essential role of the HO-1–LTN1–NDUFA6 proteostasis axis in mitochondrial integrity and introduces a targeted DNA-nanostructure-based strategy for targeted therapy in S-AKI.

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Journal
Journal of Nanobiotechnology
Published
2026-10-07
DOI
https://doi.org/10.1186/s12951-026-05145-z
Primary Topic
Heme Oxygenase-1 and Carbon Monoxide
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article
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article

Mechanism of HO-1 in alleviating sepsis-associated acute kidney injury via regulating mitochondrial proteostasis and targeted intervention with DNA nanomaterials

华天凤, Kaiqin Jin, 魏健, Min Yang et al.
Journal of Nanobiotechnology
Heme Oxygenase-1 and Carbon Monoxide
article

Mechanism of HO-1 in alleviating sepsis-associated acute kidney injury via regulating mitochondrial proteostasis and targeted intervention with DNA nanomaterials

华天凤, Kaiqin Jin, 魏健, Min Yang, Siying Liu, Yang Xu, Qihui Huang, Jianbao Wang, Wei Shi, Jie Wang
article en

Abstract

Sepsis-associated acute kidney injury (S-AKI) is a major driver of systemic mortality and chronic renal dysfunction, yet effective mechanism-based interventions are lacking. Clinical analysis revealed significant oxidative stress imbalance in patients with S-AKI, characterized by reduced serum SOD activity and GSH levels. Here, we show that a mitochondria-protective proteostasis axis centered on Heme Oxygenase-1 (HO-1) preserves tubular epithelial homeostasis by stabilizing NDUFA6, a critical subunit of mitochondrial complex I. Using HO-1 based immunoprecipitation–mass spectrometry (IP–MS), we identified NDUFA6 as a high affinity HO-1 binding partner, and further investigation revealed LTN1 as an E3 ligase regulating NDUFA6 turnover. Mechanistically, HO-1 interacted with NDUFA6 and preserved its stability by attenuating LTN1-mediated K48-linked ubiquitination, whereas LTN1 promoted ubiquitin-dependent degradation of NDUFA6. To translate these findings into a therapeutic strategy, we engineered a hexahedral DNA nanocage (DNA cube) functionalized with G4/Hemin. This platform demonstrated robust physicochemical stability, renal-specific accumulation, and mitochondrial-associated localization. In both CLP-induced S-AKI models and lipopolysaccharide-challenged HK-2 cells, the G4/Hemin-DNA cube significantly ameliorated renal injury, suppressing inflammation, oxidative stress, and mitochondrial-mediated apoptosis. Notably, these therapeutic benefits were largely abolished by HO-1 knockdown. Our study establishes an essential role of the HO-1–LTN1–NDUFA6 proteostasis axis in mitochondrial integrity and introduces a targeted DNA-nanostructure-based strategy for targeted therapy in S-AKI.

Journal of Nanobiotechnology
Anhui Medical University (CN), Second Affiliated Hospital of Anhui Medical University (CN)
Good health and well-being
Openalex Percentile: Top 23%
Heme Oxygenase-1 and Carbon Monoxide
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