Oxidative Stress Causes Renal Angiotensin II Type 1 Receptor Upregulation, Na+/H+ Exchanger 3 Overstimulation, and Hypertension

被引:48
作者
Banday, Anees A. [1 ]
Lokhandwala, Mustafa F. [1 ]
机构
[1] Univ Houston, Coll Pharm, Heart & Kidney Inst, Houston, TX 77204 USA
关键词
angiotensin II; Ca2+-dependent calmodulin; hypertension; janus kinase; phospholipase C; SMOOTH-MUSCLE-CELLS; SODIUM-PROTON EXCHANGER; PROXIMAL TUBULE; BLOOD-PRESSURE; NHE3; ACTIVITY; GENE-EXPRESSION; KINASE; RATS; ACTIVATION; ATHEROGENESIS;
D O I
10.1161/HYPERTENSIONAHA.110.162339
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
Oxidative stress modulates angiotensin (Ang) II type 1 receptor (AT(1)R) expression and function. Ang II activates renal Na+/H+ exchanger 3 (NHE3) to increase sodium reabsorption, but the mechanisms are still elusive. In addition, the upregulation of AT(1)R during oxidative stress could promote sodium retention and lead to an increase in blood pressure. Herein, we investigated the mechanism of Ang II-mediated, AT(1)R-dependent renal NHE3 regulation and effect of oxidative stress on AT(1)R signaling and development of hypertension. Male Sprague-Dawley rats received tap water (control) or 30 mmol/L of L-buthionine-sulfoximine, an oxidant, with and without 1 mmol/L of Tempol, an antioxidant, for 3 weeks. L-Buthionine-sulfoximine-treated rats exhibited oxidative stress and high blood pressure. Incubation of renal proximal tubules with Ang II caused significantly higher NHE3 activation in L-buthionine-sulfoximine-treated rats compared with control. The activation of NHE3 was sensitive to AT(1)R blocker and inhibitors of phospholipase C, tyrosine kinase, janus kinase 2 (Jak2), Ca2+-dependent calmodulin (CaM), and Ca2+ chelator. Also, incubation of proximal tubules with Ang II caused Jak2-dependent CaM phosphorylation, which led to Jak2-CaM complex formation and increased Jak2-CaM interaction with NHE3. The activation of these signaling molecules was exaggerated in L-buthionine-sulfoximine-treated rats, whereas Tempol normalized the AT(1)R signaling. In conclusion, Ang II activates renal proximal tubular NHE3 through novel pathways that involve phospholipase C and an increase in intracellular Ca2+, Jak2, and CaM. In addition, oxidative stress exaggerates Ang II signaling, which leads to overstimulation of renal NHE3 and contributes to an increase in blood pressure. (Hypertension. 2011;57:452-459.). Online Data Supplement
引用
收藏
页码:452 / U218
页数:16
相关论文
共 50 条
  • [41] Activation of Angiotensin II Type 1 Receptor-associated Protein Suppresses Vascular Hypertrophy And Oxidative Stress in Angiotensin II Mediated Hypertension
    Dejima, Toru
    Tamura, Kouichi
    Wakui, Hiromichi
    Uneda, Kazushi
    Maeda, Akinobu
    Ohsawa, Masato
    Kanaoka, Tomohiko
    Azushima, Kengo
    Azuma, Koichi
    Yamashita, Akio
    Kimura, Kazuo
    Umemura, Satoshi
    CIRCULATION, 2013, 128 (22)
  • [42] Ligand-dependent complex formation between the Angiotensin II receptor subtype AT2 and Na+/H+ exchanger NHE6 in mammalian cells
    Pulakat, L
    Cooper, S
    Knowle, D
    Mandavia, C
    Bruhl, S
    Hetrick, M
    Gavini, N
    PEPTIDES, 2005, 26 (05) : 863 - 873
  • [43] Inhibition of NA+/H+ Exchanger 1 Attenuates Renal Dysfunction Induced by Advanced Glycation End Products in Rats
    Li, Peng
    Chen, Geng-Rong
    Wang, Fu
    Xu, Ping
    Liu, Li-Ying
    Yin, Ya-Ling
    Wang, Shuang-Xi
    JOURNAL OF DIABETES RESEARCH, 2016, 2016
  • [44] Silencing of epidermal growth factor receptor reduces Na+/H+ exchanger 1 activity and hypertensive cardiac hypertrophy
    Brea, Maria S.
    Diaz, Romina G.
    Escudero, Daiana S.
    Zavala, Maite R.
    Portiansky, Enrique L.
    Villa-Abrille, Maria C.
    Caldiz, Claudia, I
    Perez, Nestor G.
    Morgan, Patricio E.
    BIOCHEMICAL PHARMACOLOGY, 2019, 170
  • [45] Targeted proteomic profiling of renal Na+ transporter and channel abundances in angiotensin II type 1a receptor knockout mice
    Brooks, HL
    Allred, AJ
    Beutler, KT
    Coffman, TM
    Knepper, MA
    HYPERTENSION, 2002, 39 (02) : 470 - 473
  • [46] Acute regulation of renal Na+/H+ exchanger NHE3 by dopamine: role of protein phosphatase 2A
    Bobulescu, I. Alexandru
    Quinones, Henry
    Gisler, Serge M.
    Di Sole, Francesca
    Hu, Ming-Chang
    Shi, Mingjun
    Zhang, Jianning
    Fuster, Daniel G.
    Wright, Nancy
    Mumby, Marc
    Moe, Orson W.
    AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2010, 298 (05) : F1205 - F1213
  • [47] Na+/H+ exchanger isoform 1 induced osteopontin expression in cardiomyocytes involves NFAT3/Gata4
    Mlih, Mohamed
    Abdulrahman, Nabeel
    Gadeau, Alain-Pierre
    Mohamed, Iman A.
    Jaballah, Maiy
    Mraiche, Fatima
    MOLECULAR AND CELLULAR BIOCHEMISTRY, 2015, 404 (1-2) : 211 - 220
  • [48] Effect of renal tubule-specific knockdown of the Na+/H+ exchanger NHE3 in Akita diabetic mice
    Onishi, Akira
    Fu, Yiling
    Darshi, Manjula
    Crespo-Masip, Maria
    Huang, Winnie
    Song, Panai
    Patel, Rohit
    Kim, Young Chul
    Nespoux, Josselin
    Freeman, Brent
    Soleimani, Manoocher
    Thomson, Scott
    Sharma, Kumar
    Vallon, Volker
    AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2019, 317 (02) : F419 - F434
  • [49] Paeonol improves renal and vascular angiotensin II type 1 receptor function via inhibiting oxidative stress in spontaneously hypertensive rats
    Wu, Tingchun
    Zheng, Yuhua
    Huang, Qianqian
    Tian, Shui
    CLINICAL AND EXPERIMENTAL HYPERTENSION, 2023, 45 (01)
  • [50] Renal Proximal Tubular Reabsorption Is Reduced In Adult Spontaneously Hypertensive Rats Roles of Superoxide and Na+/H+ Exchanger 3
    Panico, Carolina
    Luo, Zaiming
    Damiano, Sara
    Artigiano, Francesca
    Gill, Pritmohinder
    Welch, William J.
    HYPERTENSION, 2009, 54 (06) : 1291 - 1297