Cowley Allen W, Yang Chun, Zheleznova Nadezhda N, Staruschenko Alexander, Kurth Theresa, Rein Lisa, Kumar Vikash, Sadovnikov Katherine, Dayton Alex, Hoffman Matthew, Ryan Robert P, Skelton Meredith M, Salehpour Fahimeh, Ranji Mahsa, Geurts Aron
From the Department of Physiology (A.W.C., C.Y., N.N.Z., A.S., T.K., V.K., K.S., A.D., M.H., R.P.R., M.M.S., A.G.) and Division of Biostatistics, Institute for Health & Society (L.R.), Medical College of Wisconsin, Milwaukee; and Biophotonics Lab, University of Wisconsin, Milwaukee (F.S., M.R.).
Hypertension. 2016 Feb;67(2):440-50. doi: 10.1161/HYPERTENSIONAHA.115.06280. Epub 2015 Dec 7.
This study reports the consequences of knocking out NADPH (nicotinamide adenine dinucleotide phosphate) oxidase 4 (Nox4) on the development of hypertension and kidney injury in the Dahl salt-sensitive (SS) rat. Zinc finger nuclease injection of single-cell SS embryos was used to create an 8 base-pair frame-shift deletion of Nox4, resulting in a loss of the ≈68 kDa band in Western blot analysis of renal cortical tissue of the knock out of Nox4 in the SS rat (SS(Nox4-/-)) rats. SS(Nox4-/-) rats exhibited a significant reduction of salt-induced hypertension compared with SS rats after 21 days of 4.0% NaCl diet (134±5 versus 151±3 mm Hg in SS) and a significant reduction of albuminuria, tubular casts, and glomerular injury. Optical fluorescence 3-dimensional cryoimaging revealed significantly higher redox ratios (NADH/FAD [reduced nicotinamide adenine dinucleotide/flavin adenine dinucleotide]) in the kidneys of SS(Nox4-/-) rats even when fed the 0.4% NaCl diet, indicating greater levels of mitochondrial electron transport chain metabolic activity and reduced oxidative stress compared with SS rats. Before the development of hypertension, RNA expression levels of Nox subunits Nox2, p67(phox), and p22(phox) were found to be significantly lower (P<0.05) in SS(Nox4-/-) compared with SS rats in the renal cortex. Thus, the mutation of Nox4 seems to modify transcription of several genes in ways that contribute to the protective effects observed in the SS(Nox4-/-) rats. We conclude that the reduced renal injury and attenuated blood pressure response to high salt in the SS(Nox4-/-) rat could be the result of multiple pathways, including gene transcription, mitochondrial energetics, oxidative stress, and protein matrix production impacted by the knock out of Nox4.
本研究报告了敲除烟酰胺腺嘌呤二核苷酸磷酸(NADPH)氧化酶4(Nox4)对Dahl盐敏感(SS)大鼠高血压和肾损伤发展的影响。通过向单细胞SS胚胎注射锌指核酸酶,造成Nox4基因8个碱基对的移码缺失,导致在对敲除Nox4的SS大鼠(SS(Nox4-/-)大鼠)肾皮质组织进行蛋白质免疫印迹分析时,约68 kDa条带消失。在给予4.0%氯化钠饮食21天后,与SS大鼠相比,SS(Nox4-/-)大鼠盐诱导的高血压显著降低(SS大鼠为151±3 mmHg,SS(Nox4-/-)大鼠为134±5 mmHg),蛋白尿、肾小管管型和肾小球损伤也显著减轻。光学荧光三维冷冻成像显示,即使在给予0.4%氯化钠饮食时,SS(Nox4-/-)大鼠肾脏中的氧化还原比率(NADH/FAD[还原型烟酰胺腺嘌呤二核苷酸/黄素腺嘌呤二核苷酸])也显著更高,表明与SS大鼠相比,其线粒体电子传递链代谢活性更高,氧化应激更低。在高血压发生之前,发现与SS大鼠相比,SS(Nox4-/-)大鼠肾皮质中Nox亚基Nox2、p67(phox)和p22(phox)的RNA表达水平显著降低(P<0.05)。因此,Nox4的突变似乎以有助于在SS(Nox4-/-)大鼠中观察到的保护作用的方式改变了几个基因的转录。我们得出结论,SS(Nox4-/-)大鼠肾损伤减轻和对高盐的血压反应减弱可能是多种途径的结果,包括基因转录、线粒体能量代谢、氧化应激以及受Nox4敲除影响的蛋白质基质产生。