| Literature DB >> 22498777 |
Elena Ercolesi1, Gabriella Tedeschi, Gabriella Fiore, Armando Negri, Elisa Maffioli, Marco d'Ischia, Anna Palumbo.
Abstract
Developmental processes in the ascidian Ciona intestinalis depend on a complex interplay of events including, during metamorphosis, a caspase-dependent apoptosis which is regulated by the nitric oxide (NO)-cGMP signaling pathway. Herein we disclose an alternate NO-mediated signaling pathway during Ciona development which appears to be critically dependent on local redox control. Evidence in support of this conclusion includes: (a) inhibitors of NO synthase (NOS) and scavengers of NO-derived nitrating agents markedly decrease the rate of Ciona metamorphosis; (b) an NO donor or peroxynitrite caused an opposite effect; (c) increased protein nitration is observed at larva stage. Integrated proteomic and immunochemical methodologies identified nitrated tyrosine residues in ERK and snail. Overall, these results point to protein nitration as a hitherto overlooked NO-dependent regulatory mechanism in Ciona which is specifically triggered by elevated ROS production during developmental processes.Entities:
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Year: 2012 PMID: 22498777 DOI: 10.1016/j.niox.2012.03.012
Source DB: PubMed Journal: Nitric Oxide ISSN: 1089-8603 Impact factor: 4.427