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Updated: May 24, 2025

Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
YY1/HIF-1α/mROS positive-feedback loop exacerbates glomerular mesangial cell proliferation in mouse early diabetic
Ting-Ting Yang1, Yu-Ting Shao1, Qian Cheng1
1Jiangsu Key Laboratory of New Drug Research and Clinical Pharmacy, Xuzhou Medical University, Xuzhou, 221004, China.
Abstract:
Mesangial cells (MCs) are the most active intrinsic cells in the glomerulus. MCs excessively proliferate at the early stage of diabetic kidney disease (DKD), eventually causing glomerular sclerosis and even renal failure; inhibiting glomerular MC proliferation in early DKD is a promising prevention and treatment strategy for early DKD. Our previous study shows that Yin Yang 1 (YY1), a zinc finger protein, is a novel regulator of DKD-induced renal fibrosis. In this study we investigated the role of YY1 in glomerular MC proliferation in DKD in vivo and in vitro. We first showed that YY1 expression levels were significantly increased in the glomerular MCs of DKD patients and db/db mice and in high glucose (HG)-treated SV40-MES13 cells. By using YY1 expression/knockdown plasmids, we confirmed that YY1 contributed to glomerular MC proliferation in vitro. We demonstrated that YY1 upregulated hypoxia-inducible factor-1 alpha (HIF-1α) expression and activity in HG-treated SV40-MES13 cells, leading to overproduction of mROS. Moreover, mROS contributed to positive feedback regulation of YY1/HIF-1α signaling, and the YY1/HIF-1α/mROS positive feedback loop exacerbated glomerular MC proliferation in HG-treated SV40-MES13 cells. In addition, renal-specific YY1 overexpression promoted glomerular MC proliferation in normal mice, whereas renal-specific YY1 knockdown mitigated MC proliferation in early diabetic mice by inactivating HIF-1α/ROS signaling. In conclusion, the YY1/HIF-1α/mROS positive feedback loop might be an attractive therapeutic target for overcoming glomerulosclerosis in early DKD.
Insights
Yin Yang 1 (YY1) drives mesangial cell proliferation in diabetic kidney disease by activating HIF-1α and ROS. Inhibiting this YY1/HIF-1α/mROS pathway may prevent glomerulosclerosis.
Area of Science:
- Nephrology
- Molecular Biology
- Diabetology
Background:
- Diabetic kidney disease (DKD) involves excessive mesangial cell (MC) proliferation, leading to glomerular sclerosis and renal failure.
- Yin Yang 1 (YY1) has been identified as a regulator of DKD-induced renal fibrosis.
Purpose of the Study:
- To investigate the role of YY1 in glomerular MC proliferation in DKD.
- To elucidate the molecular mechanisms underlying YY1's effect on MCs in DKD.
Main Methods:
- Assessed YY1 expression in DKD patients, db/db mice, and high glucose (HG)-treated cells.
- Utilized YY1 expression/knockdown plasmids to study its effect on MC proliferation in vitro.
- Investigated the impact of YY1 on hypoxia-inducible factor-1 alpha (HIF-1α) and mitochondrial reactive oxygen species (mROS).
- Examined the effects of renal-specific YY1 manipulation in normal and diabetic mice.
Main Results:
- YY1 expression was significantly increased in glomerular MCs from DKD patients, db/db mice, and HG-treated cells.
- YY1 promoted glomerular MC proliferation in vitro and in vivo.
- YY1 upregulated HIF-1α, leading to mROS overproduction, forming a positive feedback loop that exacerbated MC proliferation.
- Renal YY1 knockdown mitigated MC proliferation in early DKD by inhibiting HIF-1α/ROS signaling.
Conclusions:
- The YY1/HIF-1α/mROS positive feedback loop plays a critical role in glomerular MC proliferation in early DKD.
- Targeting this pathway presents a potential therapeutic strategy for preventing glomerulosclerosis in DKD.
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