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Disruption of Core Planar Cell Polarity Signaling Regulates Renal Tubule Morphogenesis but Is Not Cystogenic
Koshi Kunimoto1, Roy D Bayly1, Eszter K Vladar1
1Department of Pathology, Stanford University School of Medicine, 300 Pasteur Drive, Stanford, CA 94305, USA.
Abstract:
Oriented cell division (OCD) and convergent extension (CE) shape developing renal tubules, and their disruption has been associated with polycystic kidney disease (PKD) genes, the majority of which encode proteins that localize to primary cilia. Core planar cell polarity (PCP) signaling controls OCD and CE in other contexts, leading to the hypothesis that disruption of PCP signaling interferes with CE and/or OCD to produce PKD. Nonetheless, the contribution of PCP to tubulogenesis and cystogenesis is uncertain, and two major questions remain unanswered. Specifically, the inference that mutation of PKD genes interferes with PCP signaling is untested, and the importance of PCP signaling for cystogenic PKD phenotypes has not been examined. We show that, during proliferative stages, PCP signaling polarizes renal tubules to control OCD. However, we find that, contrary to the prevailing model, PKD mutations do not disrupt PCP signaling but instead act independently and in parallel with PCP signaling to affect OCD. Indeed, PCP signaling that is normally downregulated once development is completed is retained in cystic adult kidneys. Disrupting PCP signaling results in inaccurate control of tubule diameter, a tightly regulated parameter with important physiological ramifications. However, we show that disruption of PCP signaling is not cystogenic. Our results suggest that regulating tubule diameter is a key function of PCP signaling but that loss of this control does not induce cysts.
Insights
Planar cell polarity (PCP) signaling controls oriented cell division (OCD) in developing kidneys, but polycystic kidney disease (PKD) mutations do not disrupt PCP. Instead, PCP regulates tubule diameter, and its loss does not cause PKD.
Area of Science:
- Cell biology
- Developmental biology
- Renal physiology
Background:
- Oriented cell division (OCD) and convergent extension (CE) are crucial for renal tubule development.
- Polycystic kidney disease (PKD) is linked to genes encoding primary cilia proteins, suggesting a role for planar cell polarity (PCP) signaling.
- The precise contribution of PCP signaling to tubulogenesis and cystogenesis remains unclear.
Purpose of the Study:
- To investigate the role of PCP signaling in renal tubule development and its relationship with PKD.
- To test whether PKD mutations disrupt PCP signaling.
- To determine if PCP signaling is essential for cystogenesis in PKD.
Main Methods:
- Analysis of PCP signaling during renal tubule development.
- Examination of PCP signaling in kidneys with PKD mutations.
- Assessment of the effects of disrupting PCP signaling on tubule diameter and cyst formation.
Main Results:
- PCP signaling polarizes renal tubules and controls OCD during development.
- Contrary to prevailing models, PKD mutations do not disrupt PCP signaling; they act independently.
- PCP signaling, normally downregulated post-development, is retained in cystic adult kidneys.
- Disrupting PCP signaling leads to abnormal tubule diameter regulation but does not induce cyst formation.
Conclusions:
- PCP signaling is essential for regulating renal tubule diameter.
- Disruption of PCP signaling is not a cause of cystogenesis in PKD.
- PKD pathogenesis involves mechanisms independent of PCP signaling disruption.