1. The deubiquitinating enzyme Usp14 controls ciliogenesis and Hedgehog signaling
- Author
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Marcella Cesana, Brunella Franco, Byung-Hoon Lee, Filomena Massa, Manuela Morleo, Miguel A. Prado, Roberta Tammaro, Daniel Finley, Filomena, Massa, Roberta, Tammaro, Miguel A, Prado, Cesana, Marcella, Lee, Byung-Hoon, Finley, Daniel, Franco, Brunella, MANUELA ANNA, Morleo, Massa, F, Tammaro, R, Prado, Ma, Cesana, M, Lee, Bh, Finley, D, Franco, B, and Morleo, M
- Subjects
TRPP Cation Channels ,Organogenesis ,Fluorescent Antibody Technique ,Ciliopathies ,Deubiquitinating enzyme ,Cell Line ,03 medical and health sciences ,Mice ,Ubiquitin ,Ciliogenesis ,Genetics ,Animals ,Hedgehog Proteins ,Cilia ,Molecular Biology ,Hedgehog ,Genetics (clinical) ,0303 health sciences ,biology ,Deubiquitinating Enzymes ,Cilium ,030305 genetics & heredity ,General Medicine ,Fibroblasts ,Hedgehog signaling pathway ,Cell biology ,Protein Transport ,Gene Expression Regulation ,Mutation ,biology.protein ,General Article ,Signal transduction ,Ubiquitin Thiolesterase ,Biomarkers ,Signal Transduction - Abstract
Primary cilia are hair-like organelles that play crucial roles in vertebrate development, organogenesis and when dysfunctional result in pleiotropic human genetic disorders called ciliopathies, characterized by overlapping phenotypes, such as renal and hepatic cysts, skeletal defects, retinal degeneration and central nervous system malformations. Primary cilia act as communication hubs to transfer extracellular signals into intracellular responses and are essential for Hedgehog (Hh) signal transduction in mammals. Despite the renewed interest in this ancient organelle of growing biomedical importance, the molecular mechanisms that trigger cilia formation, extension and ciliary signal transduction are still not fully understood. Here we provide, for the first time, evidence that the deubiquitinase ubiquitin-specific protease-14 (Usp14), a major regulator of the ubiquitin proteasome system (UPS), controls ciliogenesis, cilia elongation and Hh signal transduction. Moreover, we show that pharmacological inhibition of Usp14 positively affects Hh signal transduction in a model of autosomal dominant polycystic kidney disease. These findings provide new insight into the spectrum of action of UPS in cilia biology and may provide novel opportunities for therapeutic intervention in human conditions associated with ciliary dysfunction.
- Published
- 2018