4.7 Article

ENOS deficiency causes podocyte injury with mitochondrial abnormality

Journal

FREE RADICAL BIOLOGY AND MEDICINE
Volume 87, Issue -, Pages 181-192

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.freeradbiomed.2015.06.028

Keywords

Endothelial; Oxidative stress; Nitric oxide; NO; Glomerular; Podocyte

Funding

  1. Mitsubishi Tanabe Pharma Corporation
  2. Teikyo University
  3. Uehara memorial foundation
  4. Grants-in-Aid for Scientific Research [26670431] Funding Source: KAKEN

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The contribution of endothelial nitric oxide synthase (eNOS) to podocyte integrity remains unclear. This study therefore examined podocytes and mitochondrial abnormalities in eNOS deficient mice. Absence of eNOS caused glomerular hypertrophy, along with occasional glomerular sclerosis and mesangiolysis. While many glomeruli did not have such advanced lesions, ultrastructural analysis showed cellular hypertrophy, vacuolization, lysosomal enlargement, and microvillus formation in podocytes of eNOS knockout (KO) mice. Increased oxidative stress was associated with mitochondrial abnormalities, including an increase in number, coupled with a reduction in size, of mitochondria in podocytes of eN0S1(0 mice. While the levels of expression of several mitochondrial proteins were not altered, the D-17 mutation in mitochondrial DNA was significantly associated with the eNOS deficiency. Renal ATP level in the renal cortex and mitochondrial respiration in the primary podocytes were significantly lower in eN0S-K0 mice, suggesting that renal mitochondria may be functionally impaired. Podocytes cultured with endothelial conditioned medium lacking NO consistently showed a greater degree of mitochondrial fragmentation and an increase in mitochondrial oxidative stress, with these mitochondrial alterations rescued by an NO donor. In conclusion, eNOS may be necessary to maintain poclocyte integrity, especially mitochond rial function. (C) 2015 Published by Elsevier Inc.

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