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.

Cell Death & Disease
|January 22, 2021
PubMed

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.

Related Concept Videos

External Anatomy of the Kidney01:21

External Anatomy of the Kidney

The kidneys are a pair of bean-shaped organs in the human body that play a critical role in maintaining overall health. They filter out waste products from the blood, regulate blood pressure, maintain electrolyte balance, and stimulate the production of red blood cells.
The kidneys are located in the retroperitoneal space on either side of the vertebral column, protected posteriorly by the 11th and 12th ribs. The right kidney sits slightly lower than the left owing to the presence of the liver...
2.6K
Acute Kidney Injury II: Pathophysiology01:29

Acute Kidney Injury II: Pathophysiology

Acute kidney injury (AKI) causes are categorized into three primary categories based on the location of the injury: prerenal, intrarenal (or intrinsic), and postrenal causes. This classification guides clinical management and illustrates how different pathways can impair kidney function.Etiology and Pathophysiology of Acute Kidney Injury1. Prerenal causesEtiology: Prerenal Acute Kidney Injury, the most common type, occurs when reduced blood flow to the kidneys decreases filtration capacity...
551
Drug Elimination by Renal Route: Tubular Secretion01:15

Drug Elimination by Renal Route: Tubular Secretion

Once the process of glomerular filtration is completed, blood carrying unfiltered drug molecules traverses through efferent arterioles and makes its way into the peritubular capillaries in the proximal tubule. A variety of carriers play a pivotal role in actively secreting drugs from these peritubular capillaries into the tubular fluid. The organic anion transporter transfers acidic drugs, against an electrochemical gradient, from the peritubular capillaries into the renal tubule cells and...
3.1K
Acute Kidney Injury I: Introduction01:22

Acute Kidney Injury I: Introduction

Introduction:Acute Kidney Injury (AKI) describes a swift decrease in kidney function occurring over hours to days, characterized by the kidneys' failure to remove waste products from the bloodstream. This leads to dangerous complications like metabolic acidosis, fluid overload, and electrolyte imbalances, such as hyperkalemia, which can cause life-threatening arrhythmias. AKI is common in both hospital and outpatient settings, often triggered by dehydration, sepsis, or exposure to nephrotoxic...
295
Nephrotic Syndrome I : Introduction01:24

Nephrotic Syndrome I : Introduction

Nephrotic Syndrome is a chronic kidney disorder defined by clinical findings such as severe proteinuria, hypoalbuminemia, hyperlipidemia, and edema. These symptoms result from damage to the glomeruli, the kidney’s filtering units, increasing their permeability to proteins.Definition and Meaning:Proteinuria, defined as the loss of more than 3.5 grams of protein per day in adults, is a crucial feature of nephrotic syndrome. This condition is often accompanied by edema, the accumulation of...
271
Tubular Reabsorption and Secretion01:28

Tubular Reabsorption and Secretion

Tubular secretion and reabsorption are two critical processes in the nephron tubule of the kidneys. When the fluid filtered from the glomerulus enters the proximal convoluted tubule, it is referred to as filtrate, and its composition changes due to tubular reabsorption and secretion.
Tubular reabsorption is a selective process that starts when the filtrate enters the proximal tubules. It involves substances traveling through the transcellular route (through the tubule cell and peritubular...
4.8K