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Megalin knockout mice as an animal model of low molecular weight proteinuria
J R Leheste1, B Rolinski, H Vorum
1Max-Delbrueck-Center for Molecular Medicine, Berlin, Germany.
Abstract:
Megalin is an endocytic receptor expressed on the luminal surface of the renal proximal tubules. The receptor is believed to play an important role in the tubular uptake of macromolecules filtered through the glomerulus. To elucidate the role of megalin in vivo and to identify its endogenous ligands, we analyzed the proximal tubular function in mice genetically deficient for the receptor. We demonstrate that megalin-deficient mice exhibit a tubular resorption deficiency and excrete low molecular weight plasma proteins in the urine (low molecular weight proteinuria). Proteins excreted include small plasma proteins that carry lipophilic compounds including vitamin D-binding protein, retinol-binding protein, alpha(1)-microglobulin and odorant-binding protein. Megalin binds these proteins and mediates their cellular uptake. Urinary loss of carrier proteins in megalin-deficient mice results in concomitant loss of lipophilic vitamins bound to the carriers. Similar to megalin knockout mice, patients with low molecular weight proteinuria as in Fanconi syndrome are also shown to excrete vitamin/carrier complexes. Thus, these results identify a crucial role of the proximal tubule in retrieval of filtered vitamin/carrier complexes and the central role played by megalin in this process.
Insights
Megalin, a kidney receptor, is crucial for reabsorbing filtered proteins and bound vitamins. Megalin-deficient mice show protein loss in urine, leading to vitamin deficiencies.
Area of Science:
- Nephrology
- Molecular Biology
- Biochemistry
Background:
- Megalin is an endocytic receptor on renal proximal tubules.
- It is thought to be vital for reabsorbing filtered macromolecules.
Purpose of the Study:
- To investigate megalin's in vivo function.
- To identify megalin's endogenous ligands.
Main Methods:
- Analysis of proximal tubular function in megalin-deficient mice.
- Characterization of urinary protein excretion.
Main Results:
- Megalin-deficient mice exhibit impaired tubular reabsorption.
- Low molecular weight proteinuria was observed, including vitamin carriers.
- Urinary loss of carrier proteins led to deficiencies in bound lipophilic vitamins.
Conclusions:
- Megalin plays a central role in the proximal tubule's retrieval of filtered vitamin/carrier complexes.
- This highlights the kidney's importance in maintaining lipophilic vitamin homeostasis.