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.

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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