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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
c‑Maf inducing protein inhibits cofilin‑1 activity and alters podocyte cytoskeleton organization
Lixia Yu1, Jianming Ye2, Qifeng Liu2
1Department of Nephrology, The First Affiliated Hospital of Soochow University, Suzhou, Jiangsu 215006, P.R. China.
Abstract:
The glomerular visceral epithelial cells, also termed podocytes, are key in maintaining the normal renal filtration barrier. Although it has been demonstrated that stimulation of c‑Maf inducing protein (CMIP) expression is involved in podocyte damage, the molecular events during this process remain unclear. In the current study, CMIP‑induced proximal signaling was investigated by focusing on its effect on cofilin‑1 activity in puromycin aminonucleoside (PA)‑damaged podocytes. An obvious elevation of CMIP expression and phosphorylated (p) cofilin‑1 levels was detected in cultured podocytes treated with PA and in glomeruli isolated from PA‑induced nephropathy rats. Stable knockdown of CMIP prevented upregulation of p‑cofilin‑1 and reorganization of actin cytoskeleton in PA‑treated podocytes. The activity of the Src family kinase Fyn was reduced, whereas small GTPase Ras homolog gene family, member A (RhoA) activity was increased in PA‑treated podocytes. Stimulation of CMIP expression inhibited Fyn activation and decreased the expression level of p‑p190RhoGAP, a negative regulator of RhoA activity. The level of p‑LIM domain kinase 1 (LIMK1), a downstream effector of RhoA, increased significantly in PA‑treated podocytes. Notably, the applications of RhoA inhibitor or knockdown of LIMK prevented increase of the p‑cofilin‑1 level in PA‑treated podocytes. Thus, the current data provided evidence that the CMIP/Fyn/RhoA/cofilin‑1 signaling pathway may be associated with actin disorganization and podocyte foot process spreading following podocyte injury.
Insights
c-Maf inducing protein (CMIP) activates a signaling pathway involving Fyn, RhoA, and cofilin-1, leading to actin disorganization in podocyte injury. This discovery sheds light on mechanisms of renal filtration barrier damage.
Area of Science:
- Nephrology
- Cell Biology
- Molecular Biology
Background:
- Podocytes are crucial for the renal filtration barrier.
- c-Maf inducing protein (CMIP) is implicated in podocyte damage, but its molecular mechanisms are unclear.
Purpose of the Study:
- To investigate CMIP-induced signaling pathways affecting cofilin-1 activity in puromycin aminonucleoside (PA)-damaged podocytes.
- To elucidate the role of the CMIP/Fyn/RhoA/cofilin-1 pathway in podocyte injury.
Main Methods:
- Cultured podocytes and glomeruli from PA-induced nephropathy rats were used.
- CMIP expression, cofilin-1 phosphorylation, kinase activities (Fyn, RhoA), and downstream effectors (p-p190RhoGAP, p-LIMK1) were analyzed.
- Stable CMIP knockdown, RhoA inhibitor, and LIMK knockdown were employed.
Main Results:
- PA treatment increased CMIP and phosphorylated (p) cofilin-1 levels in podocytes and rat glomeruli.
- CMIP knockdown prevented p-cofilin-1 upregulation and actin cytoskeleton reorganization.
- Fyn activity decreased, while RhoA activity increased; CMIP stimulation inhibited Fyn and p-p190RhoGAP, increasing p-LIMK1.
- RhoA inhibition or LIMK knockdown attenuated p-cofilin-1 increase.
Conclusions:
- The CMIP/Fyn/RhoA/cofilin-1 signaling pathway is involved in actin disorganization and podocyte foot process spreading during injury.
- This pathway represents a potential therapeutic target for podocyte-related kidney diseases.
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