Related Experiment Video
Updated: Dec 23, 2025

Mechanism of Kemeng Fang's Inhibition of Podocyte Apoptosis in Rats with Membranous Nephropathy through the PI3K/AKT Signaling Pathway
Published on: August 23, 2024
Liver X receptor activation induces podocyte injury via inhibiting autophagic activity
Ziyi Zhang1, Shengjie Tang1, Weiwei Gui1
1Department of Endocrinology, Sir Run Run Shaw Hospital, Zhejiang University School of Medicine, No. 3 Qingchun East Road, Hangzhou, 310016, China.
Abstract:
Podocyte injury plays a key role in the occurrence and development of kidney diseases. Decreased autophagic activity in podocyte is closely related to its injury and the occurrence of proteinuria. Liver X receptors (LXRs), as metabolic nuclear receptors, participate in multiple pathophysiological processes and express in several tissues, including podocytes. Although the functional roles of LXRs in the liver, adipose tissue and intestine are well established; however, the effect of LXRs on podocytes function remains unclear. In this study, we used mouse podocytes cell line to investigate the effects of LXR activation on podocytes autophagy level and related signaling pathway by performing Western blotting, RT-PCR, GFP-mRFP-LC3 transfection, and immunofluorescence staining. Then, we tested this effect in STZ-induced diabetic mice. Transmission electron microscopy and immunohistochemistry were employed to explore the effects of LXR activation on podocytes function and autophagic activity. We found that LXR activation could inhibit autophagic flux through blocking the formation of autophagosome in podocytes in vitro which was possibly achieved by affecting AMPK, mTOR, and SIRT1 signaling pathways. Furthermore, LXR activation in vivo induced autophagy suppression in glomeruli, leading to aggravated podocyte injury. In summary, our findings indicated that activation of LXRs induced autophagy suppression, which in turn contributed to the podocyte injury.
Insights
Activating Liver X receptors (LXRs) suppresses autophagy in kidney podocytes, worsening podocyte injury and proteinuria. This LXR-induced autophagy inhibition may involve AMPK, mTOR, and SIRT1 pathways.
Area of Science:
- Nephrology
- Cell Biology
- Molecular Biology
Background:
- Podocyte injury is central to kidney disease pathogenesis.
- Reduced podocyte autophagy correlates with injury and proteinuria.
- Liver X receptors (LXRs) are metabolic nuclear receptors with known roles in other tissues, but their function in podocytes is unclear.
Purpose of the Study:
- To investigate the effect of LXR activation on podocyte autophagy.
- To elucidate the signaling pathways involved in LXR-mediated effects on podocytes.
- To assess the in vivo impact of LXR activation on podocyte injury in a diabetic mouse model.
Main Methods:
- In vitro studies using mouse podocyte cell lines with Western blotting, RT-PCR, and fluorescent autophagy assays.
- In vivo studies using STZ-induced diabetic mice.
- Transmission electron microscopy and immunohistochemistry for ultrastructural and functional analysis.
Main Results:
- LXR activation inhibited autophagic flux by blocking autophagosome formation in vitro.
- This inhibition was potentially mediated by effects on AMPK, mTOR, and SIRT1 signaling pathways.
- In vivo, LXR activation suppressed glomerular autophagy and aggravated podocyte injury.
Conclusions:
- LXR activation induces autophagy suppression in podocytes.
- This suppression contributes to podocyte injury, suggesting a potential therapeutic target for kidney diseases.
Related Concept Videos
Liver Regeneration
Cells of Liver
The liver comprises four major types of cells— hepatocytes, stellate, Kupffer, and sinusoidal endothelial cells. The hepatocytes are...
Autophagy
An autophagic pathway consists of a series of signaling events activated in response to diverse stress and physiological conditions such as food deprivation,...
Autophagic Cell Death
Autophagy and Apoptosis
Autophagy can activate apoptosis. In normal conditions, the autophagy activating protein Beclin-1 and...
Receptor Downregulation in MVBs
The EGFR can initiate signaling pathways that lead to cell proliferation, migration, and differentiation. Overexpression of EGFR stimulates cells to proliferate. Excessive EGFR...
Regulation of the Unfolded Protein Response
Delivery Pathways to the Lysosome
Endocytosis
In endocytosis, the cell membrane takes up macromolecules and particles from the surrounding medium. Clathrin-mediated...

