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Tubular injury triggers podocyte dysfunction by β-catenin–driven release of MMP-7
Roderick J. Tan, Yingjian Li, Brittney M. Rush, Débora Malta Cerqueira, Dong Zhou, Haiyan Fu, Jacqueline Ho, Donna Beer Stolz, Youhua Liu
Roderick J. Tan, Yingjian Li, Brittney M. Rush, Débora Malta Cerqueira, Dong Zhou, Haiyan Fu, Jacqueline Ho, Donna Beer Stolz, Youhua Liu
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Research Article Nephrology

Tubular injury triggers podocyte dysfunction by β-catenin–driven release of MMP-7

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Abstract

Proteinuric chronic kidney disease (CKD) remains a major health problem worldwide. While it is well established that the progression of primary glomerular disease induces tubulointerstitial lesions, how tubular injury triggers glomerular damage is poorly understood. We hypothesized that injured tubules secrete mediators that adversely affect glomerular health. To test this, we used conditional knockout mice with tubule-specific ablation of β-catenin (Ksp-β-cat–/–) and subjected them to chronic angiotensin II (Ang II) infusion or Adriamycin. Compared with control mice, Ksp-β-cat–/– mice were dramatically protected from proteinuria and glomerular damage. MMP-7, a downstream target of β-catenin, was upregulated in treated control mice, but this induction was blunted in the Ksp-β-cat–/– littermates. Incubation of isolated glomeruli with MMP-7 ex vivo led to nephrin depletion and impaired glomerular permeability. Furthermore, MMP-7 specifically and directly degraded nephrin in cultured glomeruli or cell-free systems, and this effect was dependent on its proteolytic activity. In vivo, expression or infusion of exogenous MMP-7 caused proteinuria, and genetic ablation of MMP-7 protected mice from Ang II–induced proteinuria and glomerular injury. Collectively, these results demonstrate that β-catenin–driven MMP-7 release from renal tubules promotes glomerular injury via direct degradation of the key slit diaphragm protein nephrin.

Authors

Roderick J. Tan, Yingjian Li, Brittney M. Rush, Débora Malta Cerqueira, Dong Zhou, Haiyan Fu, Jacqueline Ho, Donna Beer Stolz, Youhua Liu

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Figure 2

Podocyte foot process integrity is preserved in Ksp-β-cat–/– mice after Ang II infusion.

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Podocyte foot process integrity is preserved in Ksp-β-cat–/– mice after ...
Mice were treated as in Figure 1. (A–C) Transmission electron microscopy (TEM) showing extensive foot process effacement (arrows) in Ang II–treated Ksp-β-cat+/+ mice compared with Ksp-β-cat–/– mice. Scale bar: 500 nm. (D–F) Scanning electron microscopy (SEM) revealed marked effacement in the control mice compared with untreated control and Ang II–treated Ksp-β-cat–/– mice. Scale bar: 5 μm.

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