3.9 Review

Developmental Signaling: Does It Bridge the Gap Between Cilia Dysfunction and Renal Cystogenesis?

Journal

BIRTH DEFECTS RESEARCH PART C-EMBRYO TODAY-REVIEWS
Volume 102, Issue 2, Pages 159-173

Publisher

WILEY
DOI: 10.1002/bdrc.21065

Keywords

cilia; cystogenesis; signaling; renal cysts

Funding

  1. NIH [R21DK088048, R01DK084097]
  2. ASN Gottschalk Research Scholar Award
  3. NIH Center of Biomedical Research Excellence [P20 GM104936-06]

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For more than a decade, evidence has accumulated linking dysfunction of primary cilia to renal cystogenesis, yet molecular mechanisms remain undefined. The pathogenesis of renal cysts is complex, involving multiple cellular aberrations and signaling pathways. Adding to this complexity, primary cilia exhibit multiple roles in a context-dependent manner. On renal epithelial cells, primary cilia act as mechanosensors and trigger extracellular Ca2+ influx in response to laminar fluid flow. During mammalian development, primary cilia mediate the Hedgehog (Hh), Wnt, and Notch pathways, which control cell proliferation and differentiation, and tissue morphogenesis. Further, experimental evidence suggests the developmental state of the kidney strongly influences renal cystic disease. Thus, we review evidence for regulation of Ca2+ and cAMP, key molecules in renal cystogenesis, at the primary cilium, the role of Hh, Wnt, and Notch signaling in renal cystic disease, and the interplay between these developmental pathways and Ca2+ signaling. Indeed if these developmental pathways influence renal cystogenesis, these may represent novel therapeutic targets that can be integrated into a combination therapy for renal cystic disease. (C) 2014 Wiley Periodicals, Inc.

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