Angiotensin-converting enzyme inhibition curbs tyrosine nitration of mitochondrial proteins in the renal cortex during the early stage of diabetes mellitus in rats

Author:

Ishii Naohito1,Carmines Pamela K.2,Yokoba Masanori1,Imaizumi Hiroyuki1,Ichikawa Tsuyoshi3,Ikenagasa Hideki4,Kodera Yoshio5,Oh-Ishi Masamichi5,Aoki Yoshikazu6,Maeda Tadakazu5,Takenaka Tsuneo7,Katagiri Masato1

Affiliation:

1. Department of Medical Laboratory Sciences, Kitasato University School of Allied Health Sciences, Kanagawa 252-0373, Japan

2. Department of Cellular and Integrative Physiology, University of Nebraska College of Medicine, Omaha, NE 68198-5850, U.S.A.

3. Kitasato University Graduate School of Medical Sciences, Kanagawa 252-0373, Japan

4. Ikenaga Clinic, Tochigi 324-0063, Japan

5. Center for Disease Proteomics, Kitasato University School of Science, Kanagawa 252-0373, Japan

6. Mecom Co. Ltd, Kanagawa 221-0056, Japan

7. Department of Nephrology, Saitama Medical University, Saitama 350-0495, Japan

Abstract

Experiments were performed to evaluate the hypothesis that ACE (angiotensin-converting enzyme) inhibition (enalapril) suppresses 3-NT (3-nitrotyrosine) production in the renal cortex during the early stage of Type 1 DM (diabetes mellitus) in the rat. Enalapril was administered chronically for 2 weeks to subsets of STZ (streptozotocin)-induced DM and vehicle-treated sham rats. O2− (superoxide anion) and NOx (nitrate+nitrite) levels were measured in the media bathing renal cortical slices after 90 min incubation in vitro. SOD (superoxide dismutase) activity and 3-NT content were measured in the renal cortex homogenate. Renal cortical nitrated protein was identified by proteomic analysis. Renal cortical production of O2− and 3-NT was increased in DM rats; however, enalapril suppressed these changes. DM rats also exhibited elevated renal cortical NOx production and SOD activity, and these changes were magnified by enalapril treatment. 2-DE (two-dimensional gel electrophoresis)-based Western blotting revealed more than 20 spots with positive 3-NT immunoreactivity in the renal cortex of DM rats. Enalapril treatment blunted the DM-induced increase in tyrosine nitration of three proteins ACO2, GDH1 and MMSDH (aconitase 2, glutamate dehydrogenase 1 and methylmalonate-semialdehyde dehydrogenase), each of which resides in mitochondria. These data are consistent with enalapril preventing DM-induced tyrosine nitration of mitochondrial proteins by a mechanism involving suppression of oxidant production and enhancement of antioxidant capacity, including SOD activation.

Publisher

Portland Press Ltd.

Subject

General Medicine

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