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Severe kidney dysfunction in sialidosis mice reveals an essential role for neuraminidase 1 in reabsorption
Ikhui Kho, Ekaterina P. Demina, Xuefang Pan, Irene Londono, Christopher W. Cairo, Luisa Sturiale, Angelo Palmigiano, Angela Messina, Domenico Garozzo, Roth-Visal Ung, Fabrice Mac-Way, Éric Bonneil, Pierre Thibault, Mathieu Lemaire, Carlos R. Morales, Alexey V. Pshezhetsky
Ikhui Kho, Ekaterina P. Demina, Xuefang Pan, Irene Londono, Christopher W. Cairo, Luisa Sturiale, Angelo Palmigiano, Angela Messina, Domenico Garozzo, Roth-Visal Ung, Fabrice Mac-Way, Éric Bonneil, Pierre Thibault, Mathieu Lemaire, Carlos R. Morales, Alexey V. Pshezhetsky
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Research Article Genetics Nephrology

Severe kidney dysfunction in sialidosis mice reveals an essential role for neuraminidase 1 in reabsorption

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Abstract

Sialidosis is an ultra-rare multisystemic lysosomal disease caused by mutations in the neuraminidase 1 (NEU1) gene. The severe type II form of the disease manifests with a prenatal/infantile or juvenile onset, bone abnormalities, severe neuropathology, and visceromegaly. A subset of these patients present with nephrosialidosis, characterized by abrupt onset of fulminant glomerular nephropathy. We studied the pathophysiological mechanism of the disease in 2 NEU1-deficient mouse models, a constitutive Neu1-knockout, Neu1ΔEx3, and a conditional phagocyte-specific knockout, Neu1Cx3cr1ΔEx3. Mice of both strains exhibited terminal urinary retention and severe kidney damage with elevated urinary albumin levels, loss of nephrons, renal fibrosis, presence of storage vacuoles, and dysmorphic mitochondria in the intraglomerular and tubular cells. Glycoprotein sialylation in glomeruli, proximal distal tubules, and distal tubules was drastically increased, including that of an endocytic reabsorption receptor megalin. The pool of megalin bearing O-linked glycans with terminal galactose residues, essential for protein targeting and activity, was reduced to below detection levels. Megalin levels were severely reduced, and the protein was directed to lysosomes instead of the apical membrane. Together, our results demonstrated that desialylation by NEU1 plays a crucial role in processing and cellular trafficking of megalin and that NEU1 deficiency in sialidosis impairs megalin-mediated protein reabsorption.

Authors

Ikhui Kho, Ekaterina P. Demina, Xuefang Pan, Irene Londono, Christopher W. Cairo, Luisa Sturiale, Angelo Palmigiano, Angela Messina, Domenico Garozzo, Roth-Visal Ung, Fabrice Mac-Way, Éric Bonneil, Pierre Thibault, Mathieu Lemaire, Carlos R. Morales, Alexey V. Pshezhetsky

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Figure 7

Aberrant glycosylation of megalin affects its abundance and trafficking in the kidney of Neu1ΔEx3 mice.

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Aberrant glycosylation of megalin affects its abundance and trafficking ...
(A) Immunoblot shows reduction of megalin in Neu1ΔEx3 mouse kidney. Lectin blots show that megalin affinity to SNA substantially increases, suggestive of protein hypersialylation. A total of 100 or 25 μg of kidney protein extract from Neu1ΔEx3 and WT mice was analyzed. Arrows mark megalin position. (B) In the WT kidney, megalin shows equal intensity of PNA staining, before and after PNGaseF treatment, suggesting that the protein contains mainly O-linked glycans with terminal galactose residues. In Neu1ΔEx3 kidney, the PNGaseF-treated protein does not show affinity to PNA, suggesting the absence of glycans with terminal galactose. (C) Megalin in WT kidney is recognized by RCA-1 specific for N-linked glycans with terminal galactose residues. In Neu1ΔEx3 kidney, megalin is recognized by RCA-1 only after treatment with bacterial sialidase, consistent with oversialylation masking galactose residues. (D) In proximal renal tubules of Neu1ΔEx3 kidney, megalin (green) colocalizes with SNA (magenta), suggesting its hypersialylation. 3D images were acquired using SP8-DLS high-resolution confocal microscope. Colocalization of megalin and SNA was analyzed by LasX software (Supplemental Videos 1 and 2). (E) RCA-1 colocalizes with megalin in WT but not in Neu1ΔEx3 kidney. RCA-1 and PNA staining is increased after sialidase treatment. (F) In proximal tubules of WT kidney, megalin (green) is found on the apical membrane; in Neu1ΔEx3 kidney, it is found inside enlarged LAMP2+ lysosomes (white arrows and Supplemental Videos 3 and 4). (G) Megalin, β2-microglobulin (β2-MG), vitamin D–binding protein (DBP), and 25-OH vitamin D are detected in urine of Neu1ΔEx3 mice. (H) Cubilin (CUBN) and solute carrier SGLT2 show a trend toward reduction on the apical surface of the proximal tubules of Neu1ΔEx3 kidney. (I) Immunoblotting verifies reduction of SGLT2 protein in Neu1ΔEx3 kidney homogenates. Fluorescence and band intensities were quantified with ImageJ software. Microphotographs in D and F were taken at 630× original magnification with 5× zoom. Individual data, means, and SD (n = 3) are shown. P values were calculated using unpaired multiple t test.

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