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Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
Megalin: A Sidekick or Nemesis of the Kidney?
Kalyani Kulkarni1, Tahir Hussain
1Department of Pharmacological and Pharmaceutical Sciences, College of Pharmacy, University of Houston, Houston, Texas.
Abstract:
Megalin is an endocytic receptor in the proximal tubules that reabsorbs filtered proteins in the kidneys. Recycling of megalin after endocytosis and its expression on the apical plasma membrane of the proximal tubule are critical for its function. The expression of megalin in the kidney undergoes dynamic changes under physiologic and pathophysiologic conditions. Receptors and various effector signaling components regulate megalin expression and, potentially, function. Genetic manipulation and rare mutations in megalin suggest that a lack of or deficiency in megalin expression/function promotes tubular proteinuria and albuminuria. However, the role of megalin in kidney diseases associated with obesity, diabetes, hypertension, and nephrotoxicity remains unclear. To address these questions, animal and human studies have indicated megalin as a protective, injurious, and potentially urinary marker of nephropathy. This article reviews the literature on the regulation of megalin expression and the role of megalin in the pathophysiology of the kidney under experimental and clinical conditions. Moreover, this review articulates the need for studies that can clarify whether megalin can serve as a therapeutic target, in one way or the other, to treat kidney disease.
Insights
Megalin, a kidney protein receptor, is crucial for reabsorbing proteins. Its altered expression impacts kidney disease, but its precise role needs further study to explore therapeutic potential.
Area of Science:
- Nephrology
- Molecular Biology
- Cell Biology
Background:
- Megalin is an endocytic receptor in kidney proximal tubules, essential for protein reabsorption.
- Megalin expression is dynamically regulated and critical for kidney function.
- Deficiency in megalin is linked to proteinuria and albuminuria.
Purpose of the Study:
- To review the regulation of megalin expression in the kidney.
- To examine the role of megalin in kidney disease pathophysiology.
- To explore megalin as a potential therapeutic target for kidney diseases.
Main Methods:
- Literature review of animal and human studies.
- Analysis of experimental and clinical data on megalin.
- Synthesis of information on megalin regulation and function.
Main Results:
- Megalin's expression and function are dynamic and influenced by various factors.
- Megalin's role in kidney disease is complex, appearing protective, injurious, or as a marker.
- Studies indicate megalin's involvement in conditions like obesity, diabetes, hypertension, and nephrotoxicity.
Conclusions:
- Further research is needed to clarify megalin's multifaceted role in kidney diseases.
- Investigating megalin's potential as a therapeutic target is warranted.
- Understanding megalin regulation is key to managing kidney health.
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