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Cytoskeleton-associated protein 4 affects podocyte cytoskeleton dynamics in diabetic kidney disease
Roberto Boi, Emelie Lassén, Alva Johansson, Peidi Liu, Aditi Chaudhari, Ramesh Tati, Janina Müller-Deile, Mario Schiffer, Kerstin Ebefors, Jenny Nyström
Roberto Boi, Emelie Lassén, Alva Johansson, Peidi Liu, Aditi Chaudhari, Ramesh Tati, Janina Müller-Deile, Mario Schiffer, Kerstin Ebefors, Jenny Nyström
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Research Article Cell biology Nephrology

Cytoskeleton-associated protein 4 affects podocyte cytoskeleton dynamics in diabetic kidney disease

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Abstract

Podocytes are kidney glomerular cells that depend on rigorously regulated cytoskeleton components and integrins to form and maintain the so-called foot processes, apparatuses that attach podocytes to the glomerular basement membrane and connect them to neighboring podocytes. In diabetic kidney disease (DKD) these foot processes are effaced as a result of cytoskeleton dysregulation, a phenomenon that gradually reduces glomerular filtration. Cytoskeleton-associated protein 4 (CKAP4) is a known linker between the endoplasmic reticulum, integrins, and microtubular cytoskeleton. Since CKAP4 gene expression is downregulated in glomeruli from patients with DKD but not in other chronic kidney diseases, we hypothesized a role for CKAP4 in the mechanisms leading to foot process effacement (FPE) in DKD. CKAP4 mRNA reduction in podocytes in DKD was demonstrated in human kidney biopsies. Knockdown of CKAP4 in vivo in zebrafish resulted in edema, proteinuria, and foot process effacement, all typical features of DKD. Knockdown of CKAP4 in vitro led to disruption of the actin cytoskeleton and of the microtubular orientation. Moreover, it caused a downregulation of several integrins. These findings indicate that CKAP4 is crucial for foot process dynamics of podocytes. Its reduction, unique to DKD, is mechanistically connected to the pathophysiological processes leading to podocyte FPE.

Authors

Roberto Boi, Emelie Lassén, Alva Johansson, Peidi Liu, Aditi Chaudhari, Ramesh Tati, Janina Müller-Deile, Mario Schiffer, Kerstin Ebefors, Jenny Nyström

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Figure 8

CKAP4 KD causes downregulation of integrins and influences their modulation.

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CKAP4 KD causes downregulation of integrins and influences their modulat...
Immunofluorescence images of HPODs (untreated, scr-treated control, and CKAP4 KD cells) with phalloidin (actin cytoskeleton, red) and total and active β1 integrins (green) (A). Western blots of CKAP4, total and active ITGB1, ITGAV, ITGB3, ITGB5, RAP1A/B, and TLN1 are shown (B) along with the respective normalized protein expression graphs (C). Western blots and relative normalized protein expression graph for FOXM1, together with FOXM1 gene expression (D). Unedited/uncropped total protein blots used for normalization calculation are provided as supplemental materials. C: n = 4 per group, Tukey’s post hoc after 1-way ANOVA. *P < 0.05, **P < 0.01, ***P < 0.001. Error bars represent average ± SEM. D: n = 3 per group (both gene and protein expression), Tukey’s post hoc after 1-way ANOVA. **P < 0.01, ***P < 0.001. Error bars represent average ± SEM. AU, arbitrary units; CKAP4, cytoskeleton associated protein 4; FOXM1, forkhead protein M1; KD, knockdown; HPODs, human podocytes; scr, scrambled; ITGB1, integrin β1; ITGAV, integrin αV; ITGB3, integrin β3; ITGB5, integrin β5; RAP1A/B, Ras-related protein Rap-1A/B; TLN1, talin 1.

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