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Constitutive YAP activation in distal nephron segments disrupts epithelial identity and nephron patterning
Zeinab Dehghani-Ghobadi, Eunah Chung, Mohammed Sayed, Christopher Ahn, Hyojin Alex Choi, Annissa Aamoum, Benjamin R. Thomson, Yueh-Chiang Hu, Hee-Woong Lim, Joo-Seop Park
Zeinab Dehghani-Ghobadi, Eunah Chung, Mohammed Sayed, Christopher Ahn, Hyojin Alex Choi, Annissa Aamoum, Benjamin R. Thomson, Yueh-Chiang Hu, Hee-Woong Lim, Joo-Seop Park
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Research Article Development Genetics Nephrology

Constitutive YAP activation in distal nephron segments disrupts epithelial identity and nephron patterning

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Abstract

The distal nephron segments play a critical role in maintaining electrolyte balance, yet the mechanisms that preserve epithelial identity and segmental organization within this region remain poorly defined. Yes-associated protein (YAP), a key effector of Hippo signaling, is essential for kidney development, but its function in distal nephron epithelia is unknown. Using a genetic gain-of-function approach to activate YAP selectively in distal nephron segments, we found that sustained YAP activity profoundly disrupts epithelial organization and nephron patterning. Lineage tracing revealed that both distal convoluted tubule and connecting tubule cells originate from Slc12a3-expressing cells, and YAP activation in these segments led to increased proliferation, displacement of lineage-labeled cells beyond expected segment boundaries, and loss of segment-specific gene expression. These changes were accompanied by defects in apicobasal polarity and junctional integrity, consistent with epithelial plasticity. Unexpectedly, YAP activation in distal nephron segments also suppressed proximal tubule gene expression, indicating non-cell-autonomous effects on nephron differentiation. Together, these findings identify YAP as a critical regulator of epithelial identity in the distal nephron segments and reveal a role for Hippo signaling in coordinating intersegmental organization during kidney development.

Authors

Zeinab Dehghani-Ghobadi, Eunah Chung, Mohammed Sayed, Christopher Ahn, Hyojin Alex Choi, Annissa Aamoum, Benjamin R. Thomson, Yueh-Chiang Hu, Hee-Woong Lim, Joo-Seop Park

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Figure 6

YAP activation in DCT and CNT cells induces tubular injury and macrophage infiltration.

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YAP activation in DCT and CNT cells induces tubular injury and macrophag...
(A) In control kidneys, strong LTL labeling is observed with no detectable HAVCR1 signal. In contrast, mutant kidneys show reduced LTL labeling accompanied by HAVCR1 upregulation. Regions with weak HAVCR1 signal overlap with cells displaying weak LTL signal, whereas areas with strong HAVCR1 signal show no overlap with LTL. Two additional injury markers, SPP1 and KRT19, are upregulated in mutant kidneys. In control kidneys, SPP1 is largely expressed in HNF4A+ proximal tubules, whereas in mutant kidneys, SPP1 is upregulated in both HNF4A+ and HNF4A– tubules. In control kidneys, KRT19 signal is present in the papilla and absent in GFP+ cells, whereas in mutant kidneys, GFP+ cells show KRT19 upregulation. Stage, P6; scale bars: 100 μm. (B) Mutant kidneys show a pronounced increase in F4/80+ cells, a marker of mature tissue macrophages — reflecting enhanced macrophage infiltration and renal inflammation. Representative images from 3 independent experiments are shown. Stage, P6; scale bars: 200 μm.

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