Renal phenotypic investigations of megalin-deficient patients: novel insights into tubular proteinuria and albumin filtration

T Storm, L Tranebjærg, C Frykholm… - Nephrology Dialysis …, 2013 - academic.oup.com
T Storm, L Tranebjærg, C Frykholm, H Birn, PJ Verroust, T Nevéus, B Sundelin, JM Hertz…
Nephrology Dialysis Transplantation, 2013academic.oup.com
Background The reabsorption of filtered plasma proteins, hormones and vitamins by the
renal proximal tubules is vital for body homeostasis. Studies of megalin-deficient mice
suggest that the large multi-ligand endocytic receptor megalin plays an essential role in this
process. In humans, dysfunctional megalin causes the extremely rare Donnai-Barrow/Facio-
Oculo-Acustico-Renal (DB/FOAR) syndrome characterized by a characteristic and
multifaceted phenotype including low-molecular-weight proteinuria. In this study, we …
Background
The reabsorption of filtered plasma proteins, hormones and vitamins by the renal proximal tubules is vital for body homeostasis. Studies of megalin-deficient mice suggest that the large multi-ligand endocytic receptor megalin plays an essential role in this process. In humans, dysfunctional megalin causes the extremely rare Donnai-Barrow/Facio-Oculo-Acustico-Renal (DB/FOAR) syndrome characterized by a characteristic and multifaceted phenotype including low-molecular-weight proteinuria. In this study, we examined the role of megalin for tubular protein reabsorption in humans through analysis of proximal tubular function in megalin-deficient patients.
Methods
Direct sequencing of the megalin-encoding gene (LRP2) was performed in a family in which three children presented with classical DB/FOAR manifestations. Renal consequences of megalin deficiency were investigated through immunohistochemical analyses of renal biopsy material and immunoblotting of urine samples.
Results
In the patients, a characteristic urinary protein profile with increased urinary excretion of vitamin D-binding protein, retinol-binding protein and albumin was associated with absence of, or reduced, proximal tubular endocytic uptake as shown by renal immunohistochemistry. In the absence of tubular uptake, urinary albumin excretion was in the micro-albuminuric range suggesting that limited amounts of albumin are filtered in human glomeruli.
Conclusions
This study demonstrated that megalin plays an essential role for human proximal tubular protein reabsorption and suggests that only limited amounts of albumin is normally filtered in the human glomeruli. Finally, we propose that the characteristic urinary protein profile of DB/FOAR patients may be utilized as a diagnostic marker of megalin dysfunction.
Oxford University Press