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PMID: 15477378 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Intracellular Ca2+ regulates the phosphorylation and the dephosphorylation of ciliary proteins via the NO pathway.

The Journal of general physiology ·Vol. 124 ·No. 5 ·2004-11-00 ·Pages 527-40

Gertsberg I, Hellman V, Fainshtein M, Weil S, Silberberg SD, Danilenko M, Priel Z

Abstract

The phosphorylation profile of ciliary proteins under basal conditions and after stimulation by extracellular ATP was investigated in intact tissue and in isolated cilia from porcine airway epithelium using anti-phosphoserine and anti-phosphothreonine specific antibodies. In intact tissue, several polypeptides were serine phosphorylated in the absence of any treatment (control conditions). After stimulation by extracellular ATP, changes in the phosphorylation pattern were detected on seven ciliary polypeptides. Serine phosphorylation was enhanced for three polypeptides (27, 37, and 44 kD), while serine phosphorylation was reduced for four polypeptides (35, 69, 100, and 130 kD). Raising intracellular Ca2+ with ionomycin induced identical changes in the protein phosphorylation profile. Inhibition of the NO pathway by inhibiting either NO synthase (NOS), guanylyl cyclase (GC), or cGMP-dependent protein kinase (PKG) abolished the changes in phosphorylation induced by ATP. The presence of PKG within the axoneme was demonstrated using a specific antibody. In addition, in isolated permeabilized cilia, submicromolar concentrations of cGMP induced protein phosphorylation. Taken together, these results suggest that the axoneme is an integral part of the intracellular NO pathway. The surprising observation that ciliary activation is accompanied by sustained dephosphorylation of ciliary proteins via NO pathway was not detected in isolated cilia, suggesting that the protein phosphatases were either lost or deactivated during the isolation procedure. This work reveals that any pharmacological manipulation that abolished phosphorylation and dephosphorylation also abolished the enhancement of ciliary beating. Thus, part or all of the phosphorylated polypeptides are likely directly involved in axonemal regulation of ciliary beating.

MeSH Terms
Adenosine Triphosphate/metabolism Animals Calcium/metabolism Cell Movement/physiology Cells, Cultured Cilia/physiology,ultrastructure Cyclic GMP/metabolism Intracellular Fluid/metabolism Nitric Oxide/metabolism Phosphorylation Respiratory Mucosa/cytology,physiology Signal Transduction/physiology Swine
Chemicals
Nitric Oxide Adenosine Triphosphate Cyclic GMP Calcium
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Gertsberg Irena
Department of Chemistry, Faculty of Natural Science, Ben-Gurion University of the Negev, P.O. Box 653, Beer-Sheva 84105, Israel.
Hellman Vardit
Fainshtein Michal
Weil Simy
Silberberg Shai D
Danilenko Michael
Priel Zvi
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Article Info
Journal
The Journal of general physiology
Abbr.
J Gen Physiol
ISSN
0022-1295
Published
2004-11-00
Epub
2004-00-11
Pages
527-40
Language
English
Region
United States
NLM ID
2985110R
PMCID
PMC2234008
Subset
IM
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