The effect of dexamethasone on defective nephrin transport caused by ER stress: A potential mechanism for the therapeutic action of glucocorticoids in the acquired glomerular diseases
Author(s) -
Yuko Fujii,
Jamshid Khoshnoodi,
Hideaki Takenaka,
Makoto Hosoyamada,
Aya Nakajo,
Fumio Bessho,
Akihiko Kudo,
Shori Takahashi,
Yoshihiro Arimura,
Akira Yamada,
Toshihiko Nagasawa,
Vesa Ruotsalainen,
Karl Tryggvason,
Amy S. Lee,
Kunimasa Yan
Publication year - 2006
Publication title -
kidney international
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.499
H-Index - 276
eISSN - 1523-1755
pISSN - 0085-2538
DOI - 10.1038/sj.ki.5000317
Subject(s) - nephrin , endoplasmic reticulum , endocrinology , medicine , unfolded protein response , nephrotic syndrome , podocyte , microbiology and biotechnology , calnexin , biology , calreticulin , chemistry , kidney , proteinuria
The mechanism by which glucocorticoids govern antiproteinuric effect in nephrotic syndrome remains unknown. Present study examined the protective role of dexamethasone (DEX) in the intracellular trafficking of nephrin under endoplasmic reticulum (ER) stress. Human embryonic kidney-293 cell line expressing a full-length human nephrin was cultured in mediums containing 5.5 or 25 mM glucose with or without DEX. The result revealed that glucose starvation evoked a rapid ER stress leading to formation of underglycosylated nephrin that was remained in the ER as a complex with calreticulin/calnexin. DEX rescued this interfered trafficking through binding to its receptor and stimulating the mitochondrial transcripts and adenosine 5' triphosphate (ATP) production, leading to synthesis of fully glycosylated nephrin. These results suggest that ER-stress in podocytes may cause alteration of nephrin N-glycosylation, which may be an underlying factor in the pathomechanism of the proteinuria in nephrotic syndrome. DEX may restore this imbalance by stimulating expression of mitochondrial genes, resulted in the production of ATP that is essential factor for proper folding machinery aided by the ER chaperones.
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