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Updated: Nov 20, 2025

Bilateral Renal Ischemia-Reperfusion Model for Acute Kidney Injury in Mice
Published on: February 2, 2024
Tubular Mas receptor mediates lipid-induced kidney injury
Yonglun Kong1, Xiaoduo Zhao1, Miaojuan Qiu1,2
1Department of Pathophysiology, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, 510080, China.
Abstract:
Obesity-related kidney diseases are becoming serious health problems worldwide, yet the mechanism by which obesity causes kidney injury is not fully understood. The purpose of current study was to investigate the role of Mas receptor in lipid-induced kidney injury. In mice fed with high-fat diet (HFD), the protein abundance of markers of autophagy, endoplasmic reticulum stress (ER stress) and apoptosis was dramatically increased in the kidney cortex, which was markedly prevented by Mas deletion (Mas-/-) or Mas receptor antagonist A779. Palmitic acid (PA) induced persistently increased autophagy, ER stress, and apoptosis as well as mitochondrial injuries in primary cultured proximal tubular cells from wild type, but not from Mas-/- mice. In human proximal tubular HK2 cells, PA-induced autophagy and ER stress was aggravated by Mas agonists Ang (1-7) or AVE0991, but attenuated by A779 or Mas knockdown. Stimulation of Mas resulted in elevated intracellular calcium levels [Ca2+]i in HK2 cells treated with PA, whereas inhibition or knockdown of Mas decreased [Ca2+]i. Mitochondrial outer membrane located voltage-dependent anion channel (VDAC1) was markedly upregulated in HK2 cells treated with PA, which was associated with impaired mitochondrial morphology and depolarization. These were enhanced by AVE0991 and suppressed by A779 or Mas knockdown. Mas knockdown in HK2 cells prevented impaired interactions among VDAC1, autophagy adaptor P62, and ubiquitin, induced by PA, leading to a potential ubiquitination of VDAC1. In conclusion, Mas receptor-mediated lipid-induced impaired autophagy and ER stress in the kidney, likely contributing to tubular injuries in obesity-related kidney diseases.
Insights
The Mas receptor plays a key role in obesity-related kidney damage by worsening lipid-induced autophagy and endoplasmic reticulum stress (ER stress), contributing to tubular injury.
Area of Science:
- Nephrology
- Molecular Biology
- Cell Biology
Background:
- Obesity-related kidney diseases are a growing global health concern.
- The precise mechanisms linking obesity to kidney injury remain unclear.
- Understanding these mechanisms is crucial for developing effective treatments.
Purpose of the Study:
- To investigate the role of the Mas receptor in lipid-induced kidney injury.
- To elucidate the molecular pathways involved in obesity-related kidney damage.
Main Methods:
- Utilized high-fat diet (HFD) induced obesity model in mice.
- Examined autophagy, ER stress, and apoptosis markers in kidney cortex.
- Employed palmitic acid (PA) in primary cultured proximal tubular cells and human HK2 cells.
- Assessed the effects of Mas receptor agonists, antagonists, and knockdown.
Main Results:
- HFD increased autophagy, ER stress, and apoptosis markers in mouse kidneys, which was prevented by Mas deletion or antagonist A779.
- Palmitic acid induced cellular stress and mitochondrial injury in wild-type cells, but not in Mas-deficient cells.
- Mas receptor stimulation exacerbated PA-induced cellular stress, while inhibition or knockdown attenuated it.
- Mas receptor activation influenced intracellular calcium levels and VDAC1 upregulation, impacting mitochondrial function.
Conclusions:
- The Mas receptor mediates lipid-induced impairment of autophagy and ER stress in the kidney.
- These Mas receptor-driven cellular dysfunctions contribute to tubular injury in obesity-related kidney diseases.
- Targeting the Mas receptor may offer a therapeutic strategy for managing kidney complications associated with obesity.
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