Integrative transcriptomic and single-cell analyses identify CD74 as a candidate regulator of ferroptosis in renal tubular cells during nephrolithiasis.
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چکیده اصلی
Nephrolithiasis incidence has risen with frequent recurrence, and injury to renal tubular epithelial cells is central to its pathology. Ferroptosis, an iron-dependent form of regulated cell death, has been implicated in kidney diseases, but its role in nephrolithiasis remains unclear. In this study, we investigated whether CD74 is associated with ferroptosis-related tubular injury during nephrolithiasis and explored the potential involvement of NF-κB signaling. A glyoxylate-induced mouse model showed prominent calcium oxalate deposition, impaired renal function, altered expression of ACSL4 and GPX4, and increased oxidative stress. Integrating bulk transcriptomics, protein-protein interaction networks, bioinformatics, and a public single-cell RNA-sequencing dataset, we identified CD74 as a candidate ferroptosis-associated gene showing increased expression during nephrolithiasis progression. In vitro, oxalate exposure in human HK-2 cells induced CD74 upregulation together with ferroptosis-associated molecular and biochemical changes. CD74 knockdown improved cell viability and redox homeostasis and attenuated ferroptosis-associated marker changes, whereas CD74 overexpression aggravated oxidative injury and ferroptosis. Mechanistically, CD74 modulation was associated with changes in NF-κB signaling activity, and pharmacological modulation of NF-κB partially reversed the corresponding cellular phenotypes. Together, these findings support a potential role of CD74-associated NF-κB signaling in ferroptosis-related tubular injury during nephrolithiasis. These findings suggest that the CD74/NF-κB axis may represent a potential therapeutic direction and provide mechanistic insight for future studies.
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