[HTML][HTML] Diacylglycerol kinase alpha is involved in the vitamin E-induced amelioration of diabetic nephropathy in mice

D Hayashi, K Yagi, C Song, S Ueda, M Yamanoue… - Scientific reports, 2017 - nature.com
D Hayashi, K Yagi, C Song, S Ueda, M Yamanoue, M Topham, T Suzaki, N Saito, N Emoto…
Scientific reports, 2017nature.com
Diabetic nephropathy (DN) is one of vascular complications of diabetes and is caused by
abnormal protein kinase C activation as a result of increased diacylglycerol (DG) production
in diabetic hyperglycaemia. Diacylglycerol kinase (DGK) converts DG into phosphatidic acid.
Therefore, it is expected that the activation of DGK would ameliorate DN. Indeed, it has been
reported that vitamin E (VtE) ameliorates DN in rat by activating DGK, and we recently
reported that VtE specifically activates DGKα isoform in vitro. However, whether DGKα is …
Abstract
Diabetic nephropathy (DN) is one of vascular complications of diabetes and is caused by abnormal protein kinase C activation as a result of increased diacylglycerol (DG) production in diabetic hyperglycaemia. Diacylglycerol kinase (DGK) converts DG into phosphatidic acid. Therefore, it is expected that the activation of DGK would ameliorate DN. Indeed, it has been reported that vitamin E (VtE) ameliorates DN in rat by activating DGK, and we recently reported that VtE specifically activates DGKα isoform in vitro. However, whether DGKα is involved in the VtE-induced amelioration of DN in vivo remains unknown. Therefore, we investigated the VtE-induced amelioration of DN in wild-type (DGKα+/+) and DGKα–deficient (DGKα−/−) mice in which diabetes was induced by streptozocin. Several symptoms of DN were ameliorated by VtE treatment in the DGKα+/+ mice but not in the DGKα−/− mice. Moreover, transmission electron microscopy of glomeruli and immunofluorescent staining of glomerular epithelial cells (podocytes) indicated that VtE ameliorates podocyte pathology and prevents podocyte loss in the DGKα+/+ mice but not in the DGKα−/− mice. We showed that VtE can ameliorate DN in mice and that DGKα is involved in the VtE-induced amelioration of DN in vivo, suggesting that DGKα is an attractive therapeutic target for DN.
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