Oxidized low-density lipoprotein potentiates angiotensin II-induced Gq activation through the AT1-LOX1 receptor complex: Implications for renal dysfunction

Author:

Ihara Jittoku1,Huang Yibin12,Takami Yoichi1ORCID,Nozato Yoichi1,Takahashi Toshimasa13,Kakino Akemi4,Wang Cheng1,Wang Ziwei1,Guo Yu1,Liu Weidong1,Yin Nanxiang1,Ohara Ryoichi1,Fujimoto Taku1,Yoshida Shino1,Hongyo Kazuhiro1,Koriyama Hiroshi1,Akasaka Hiroshi1ORCID,Takeshita Hikari1,Sakai Shinsuke5,Inoue Kazunori5,Isaka Yoshitaka5,Rakugi Hiromi1,Sawamura Tatsuya4,Yamamoto Koichi1

Affiliation:

1. Department of Geriatric and General Medicine, Osaka University Graduate School of Medicine

2. Center for Pulmonary and Vascular Biology, Dept. of Pediatrics, University of Texas Southwestern Medical Center

3. Department of Medicine, Takahashi clinic

4. Department of Molecular Pathophysiology, Shinshu University Graduate School of Medicine

5. Department of Nephrology, Osaka University Graduate School of Medicine

Abstract

Chronic kidney disease (CKD) and atherosclerotic heart disease, frequently associated with dyslipidemia and hypertension, represent significant health concerns. We investigated the interplay among these conditions, focusing on the role of oxidized low-density lipoprotein (oxLDL) and angiotensin II (Ang II) in renal injury via G protein αq subunit (Gq) signaling. We hypothesized that oxLDL enhances Ang II-induced Gq signaling via the AT1 (Ang II type 1 receptor)-LOX1 (lectin-like oxLDL receptor) complex. Based on CHO and renal cell model experiments, oxLDL alone did not activate Gq signaling. However, when combined with Ang II, it significantly potentiated Gq-mediated inositol phosphate 1 production and calcium influx in cells expressing both LOX-1 and AT1 but not in AT1-expressing cells. This suggests a critical synergistic interaction between oxLDL and Ang II in the AT1-LOX1 complex. Conformational studies using AT1 biosensors have indicated a unique receptor conformational change due to the oxLDL-Ang II combination. In vivo, wild-type mice fed a high-fat diet with Ang II infusion presented exacerbated renal dysfunction, whereas LOX-1 knockout mice did not, underscoring the pathophysiological relevance of the AT1-LOX1 interaction in renal damage. These findings highlight a novel mechanism of renal dysfunction in CKD driven by dyslipidemia and hypertension and suggest the therapeutic potential of AT1-LOX1 receptor complex in patients with these comorbidities.

Publisher

eLife Sciences Publications, Ltd

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