Characterization of Arabidopsis calcium-dependent protein kinases: activated or not by calcium?

Author:

Boudsocq Marie1,Droillard Marie-Jo1,Regad Leslie2,Laurière Christiane1

Affiliation:

1. Institut des Sciences du Végétal, UPR 2355, CNRS, 1 av. de la terrasse, 91198 Gif s/Yvette cedex, France

2. MTi, Université Paris Diderot, Sorbonne Paris Cité, INSERM U973, 75013 Paris, France

Abstract

CDPKs (calcium-dependent protein kinases), which contain both calmodulin-like calcium binding and serine/threonine protein kinase domains, are only present in plants and some protozoans. Upon activation by a stimulus, they transduce the signal through phosphorylation cascades to induce downstream responses, including transcriptional regulation. To understand the functional specificities of CDPKs, 14 Arabidopsis CPKs (CDPKs in plants) representative of the three main subgroups were characterized at the biochemical level, using HA (haemagglutinin)-tagged CPKs expressed in planta. Most of them were partially or mainly associated with membranes, in agreement with acylation predictions. Importantly, CPKs displayed highly variable calcium-dependences for their kinase activities: seven CPKs from subgroups 1 and 2 were clearly sensitive to calcium with different intensities, whereas six CPKs from subgroup 3 exhibited low or no calcium sensitivity to two generic substrates. Interestingly, this apparent calcium-independence correlated with significant alterations in the predicted EF-hands of these kinases, although they all bound calcium. The noticeable exception, CPK25, was calcium-independent owing to the absence of functional EF-hands. Taken together, the results of the present study suggest that calcium binding differentially affects CDPK isoforms that may be activated by distinct molecular mechanisms.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference51 articles.

1. Breaking the code: Ca2+ sensors in plant signalling;DeFalco;Biochem. J.,2010

2. Calcium signals: the lead currency of plant information processing;Kudla;Plant Cell,2010

3. Stress signaling II: calcium sensing and signaling;Boudsocq,2010

4. Plants, symbiosis and parasites: a calcium signalling connection;Harper;Nat. Rev. Mol. Cell Biol.,2005

5. Calcium signaling through protein kinases. The Arabidopsis calcium-dependent protein kinase gene family;Cheng;Plant Physiol.,2002

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