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Polycystin-1 regulates ARHGAP35-dependent centrosomal RhoA activation and ROCK signaling
Andrew J. Streets, Philipp P. Prosseda, Albert C.M. Ong
Andrew J. Streets, Philipp P. Prosseda, Albert C.M. Ong
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Research Article Genetics Nephrology

Polycystin-1 regulates ARHGAP35-dependent centrosomal RhoA activation and ROCK signaling

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Abstract

Mutations in PKD1 (encoding for polycystin-1 [PC1]) are found in 80%–85% of patients with autosomal dominant polycystic kidney disease (ADPKD). We tested the hypothesis that changes in actin dynamics result from PKD1 mutations through dysregulation of compartmentalized centrosomal RhoA signaling mediated by specific RhoGAP (ARHGAP) proteins resulting in the complex cellular cystic phenotype. Initial studies revealed that the actin cytoskeleton was highly disorganized in cystic cells derived from patients with PKD1 and was associated with an increase in total and centrosomal active RhoA and ROCK signaling. Using cilia length as a phenotypic readout for centrosomal RhoA activity, we identified ARHGAP5, -29, and -35 as essential regulators of ciliation in normal human renal tubular cells. Importantly, a specific decrease in centrosomal ARHGAP35 was observed in PKD1-null cells using a centrosome-targeted proximity ligation assay and by dual immunofluorescence labeling. Finally, the ROCK inhibitor hydroxyfasudil reduced cyst expansion in both human PKD1 3D cyst assays and an inducible Pkd1 mouse model. In summary, we report a potentially novel interaction between PC1 and ARHGAP35 in the regulation of centrosomal RhoA activation and ROCK signaling. Targeting the RhoA/ROCK pathway inhibited cyst formation in vitro and in vivo, indicating its relevance to ADPKD pathogenesis and for developing new therapies to inhibit cyst initiation.

Authors

Andrew J. Streets, Philipp P. Prosseda, Albert C.M. Ong

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Figure 3

Total and centrosomal RhoA and ROCK activity is increased in ADPKD models and alters cilia length.

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Total and centrosomal RhoA and ROCK activity is increased in ADPKD model...
(A) GTP-RhoA was significantly increased in PKD1 cystic cell lines compared with control cells (n = 4) using a Rhotekin-GTP pulldown assay. (B) GTP-RhoA was significantly increased in Pkd1-knockout kidneys compared with controls (n = 3). (C) Phosphorylation of myosin light chain (pMLC), a major downstream target of ROCK, was significantly upregulated in isogenic PKD1-null cells (n = 3). (D) Expression of dominant negative RhoA (T19N) in PKD1 cells resulted in a significant increase in cilia length compared with dominant negative Cdc42 (N17) or Rac1 (N17) (n = 3 independent experiments, N = 81 cells). (E) Active RhoA was localized using a GTP-RhoA biosensor (R-GBD) in control and PKD1 cells. In ciliated cells, active RhoA (GFP) was visualized at the cilia base (arrows) and was significantly increased in PKD1 cells (n = 3 independent experiments, N = 22 cells). Insets show cilia under higher magnification (original magnification, ×1000). (F) Rapamycin-inducible centrosomal targeted expression (arrow) of constitutively active RhoA (Q63L) was associated with a significant decrease in cilia length in control cells compared with uninduced cells (n = 3 independent experiments, N = 70 cells) *P < 0.05, **P < 0.01, ****P < 0.0001. Significance determined by 2-tailed Student’s t test (A–C and E). Significance determined by 1-way ANOVA corrected (Dunnett) for multiple comparison (D and F). ADPKD, autosomal dominant polycystic kidney disease.

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