Related Content
Search Google Scholar for:
|
|
Science 17 May 1991: Vol. 252. no. 5008, pp. 951 - 954 DOI: 10.1126/science.1852075
|
|
Articles
Science, Vol 252, Issue 5008, 951-954
Copyright © 1991 by American Association for the Advancement of Science
A calcium-dependent protein kinase with a regulatory domain similar to calmodulin
JF Harper,
MR Sussman,
GE Schaller,
C Putnam-Evans,
H Charbonneau,
and
AC Harmon
Department of Botany, Louisiana State University, Baton Rouge 70803.
Calcium can function as a second messenger through stimulation of calcium-dependent protein kinases. A protein kinase that requires calcium but not calmodulin or phospholipids for activity has been purified from soybean. The kinase itself binds calcium with high affinity. A complementary DNA clone for this kinase has been identified; it encodes a protein with a predicted molecular mass of 57,175 daltons. This protein contains a catalytic domain similar to that of calmodulin-dependent kinases and a calmodulin-like region with four calcium binding domains (EF hands). The predicted structure of this kinase explains its direct regulation via calcium binding and establishes it as a prototype for a new family of calcium-regulated protein kinases.
THIS ARTICLE HAS BEEN CITED BY OTHER ARTICLES:
- A Tobacco Calcium-Dependent Protein Kinase, CDPK1, Regulates the Transcription Factor REPRESSION OF SHOOT GROWTH in Response to Gibberellins.
- S. Ishida, T. Yuasa, M. Nakata, and Y. Takahashi (2008)
PLANT CELL
20, 3273-3288
| Abstract »
| Full Text »
| PDF »
- Two Calcium-Dependent Protein Kinases, CPK4 and CPK11, Regulate Abscisic Acid Signal Transduction in Arabidopsis.
- S.-Y. Zhu, X.-C. Yu, X.-J. Wang, R. Zhao, Y. Li, R.-C. Fan, Y. Shang, S.-Y. Du, X.-F. Wang, F.-Q. Wu, et al. (2007)
PLANT CELL
19, 3019-3036
| Abstract »
| Full Text »
| PDF »
- Distinct signalling pathways for induction of MAP kinase activities by cadmium and copper in rice roots.
- C.-M. Yeh, P.-S. Chien, and H.-J. Huang (2007)
J. Exp. Bot.
58, 659-671
| Abstract »
| Full Text »
| PDF »
- Domain Analysis of a Groundnut Calcium-dependent Protein Kinase: NUCLEAR LOCALIZATION SEQUENCE IN THE JUNCTION DOMAIN IS COUPLED WITH NONCONSENSUS CALCIUM BINDING DOMAINS.
- A. Raichaudhuri, R. Bhattacharyya, S. Chaudhuri, P. Chakrabarti, and M. DasGupta (2006)
J. Biol. Chem.
281, 10399-10409
| Abstract »
| Full Text »
| PDF »
- Abscisic Acid Stimulates a Calcium-Dependent Protein Kinase in Grape Berry.
- X.-C. Yu, M.-J. Li, G.-F. Gao, H.-Z. Feng, X.-Q. Geng, C.-C. Peng, S.-Y. Zhu, X.-J. Wang, Y.-Y. Shen, and D.-P. Zhang (2006)
Plant Physiology
140, 558-579
| Abstract »
| Full Text »
| PDF »
- A Wound-Responsive and Phospholipid-Regulated Maize Calcium-Dependent Protein Kinase.
- J. Szczegielniak, M. Klimecka, A. Liwosz, A. Ciesielski, S. Kaczanowski, G. Dobrowolska, A. C. Harmon, and G. Muszynska (2005)
Plant Physiology
139, 1970-1983
| Abstract »
| Full Text »
| PDF »
- Genome-wide Identification of the Rice Calcium-dependent Protein Kinase and its Closely Related Kinase Gene Families: Comprehensive Analysis of the CDPKs Gene Family in Rice.
- T. Asano, N. Tanaka, G. Yang, N. Hayashi, and S. Komatsu (2005)
Plant Cell Physiol.
46, 356-366
| Abstract »
| Full Text »
| PDF »
- A Tobacco Calcium/Calmodulin-binding Protein Kinase Functions as a Negative Regulator of Flowering.
- W. Hua, L. Zhang, S. Liang, R. L. Jones, and Y.-T. Lu (2004)
J. Biol. Chem.
279, 31483-31494
| Abstract »
| Full Text »
| PDF »
- Evidence for Differing Roles for Each Lobe of the Calmodulin-like Domain in a Calcium-dependent Protein Kinase.
- J. Christodoulou, A. Malmendal, J. F. Harper, and W. J. Chazin (2004)
J. Biol. Chem.
279, 29092-29100
| Abstract »
| Full Text »
| PDF »
- Characterization of a Novel Calcium/Calmodulin-Dependent Protein Kinase from Tobacco.
- L. Ma, S. Liang, R. L. Jones, and Y.-T. Lu (2004)
Plant Physiology
135, 1280-1293
| Abstract »
| Full Text »
| PDF »
- Subcellular Targeting of Nine Calcium-Dependent Protein Kinase Isoforms from Arabidopsis.
- C. Dammann, A. Ichida, B. Hong, S. M. Romanowsky, E. M. Hrabak, A. C. Harmon, B. G. Pickard, and J. F. Harper (2003)
Plant Physiology
132, 1840-1848
| Abstract »
| Full Text »
| PDF »
- The Arabidopsis CDPK-SnRK Superfamily of Protein Kinases.
- E. M. Hrabak, C. W.M. Chan, M. Gribskov, J. F. Harper, J. H. Choi, N. Halford, J. Kudla, S. Luan, H. G. Nimmo, M. R. Sussman, et al. (2003)
Plant Physiology
132, 666-680
| Abstract »
| Full Text »
| PDF »
- Temporal Association of Ca2+-Dependent Protein Kinase with Oil Bodies during Seed Development in Santalum album L.: Its Biochemical Characterization and Significance.
- V. S. Anil, A. C. Harmon, and K. S. Rao (2003)
Plant Cell Physiol.
44, 367-376
| Abstract »
| Full Text »
| PDF »
- Calcium Signaling through Protein Kinases. The Arabidopsis Calcium-Dependent Protein Kinase Gene Family.
- S.-H. Cheng, M. R. Willmann, H.-C. Chen, and J. Sheen (2002)
Plant Physiology
129, 469-485
| Abstract »
| Full Text »
| PDF »
- Calcium at the Crossroads of Signaling.
- D. Sanders, J. Pelloux, C. Brownlee, and J. F. Harper (2002)
PLANT CELL
14, S401-417
| Full Text »
| PDF »
- LeCPK1, a Calcium-Dependent Protein Kinase from Tomato. Plasma Membrane Targeting and Biochemical Characterization.
- F. Rutschmann, U. Stalder, M. Piotrowski, C. Oecking, and A. Schaller (2002)
Plant Physiology
129, 156-168
| Abstract »
| Full Text »
| PDF »
- Ca2+-binding proteins of cilia and infraciliary lattice of Paramecium tetraurelia: their phosphorylation by purified endogenous Ca2+-dependent protein kinases.
- K. Kim, M. Son, J. B. Peterson, and D. L. Nelson (2002)
J. Cell Sci.
115, 1973-1984
| Abstract »
| Full Text »
| PDF »
- An Arabidopsis SNF1-Related Protein Kinase, AtSR1, Interacts with a Calcium-Binding Protein, AtCBL2, of Which Transcripts Respond to Light.
- A. Nozawa, N. Koizumi, and H. Sano (2001)
Plant Cell Physiol.
42, 976-981
| Abstract »
| Full Text »
| PDF »
- Molecular Characterization of Functional Domains in the Protein Kinase SOS2 That Is Required for Plant Salt Tolerance.
- Y. Guo, U. Halfter, M. Ishitani, and J.-K. Zhu (2001)
PLANT CELL
13, 1383-1400
| Abstract »
| Full Text »
| PDF »
- A Rice Membrane-Bound Calcium-Dependent Protein Kinase Is Activated in Response to Low Temperature.
- M. L. Martín and L. Busconi (2001)
Plant Physiology
125, 1442-1449
| Abstract »
| Full Text »
- Calcium-Mediated Signaling during Sandalwood Somatic Embryogenesis. Role for Exogenous Calcium as Second Messenger.
- V. S. Anil and K. S. Rao (2000)
Plant Physiology
123, 1301-1312
| Abstract »
| Full Text »
- Spatio-Temporal Accumulation and Activity of Calcium-Dependent Protein Kinases during Embryogenesis, Seed Development, and Germination in Sandalwood.
- V. S. Anil, A. C. Harmon, and K. S. Rao (2000)
Plant Physiology
122, 1035-1044
| Abstract »
| Full Text »
- Osmotic Stress Induces Rapid Activation of a Salicylic Acid-Induced Protein Kinase and a Homolog of Protein Kinase ASK1 in Tobacco Cells.
- M. Mikolajczyk, O. S. Awotunde, G. Muszynska, D. F. Klessig, and G. Dobrowolska (2000)
PLANT CELL
12, 165-178
| Abstract »
| Full Text »
| PDF »
- Autophosphorylation-Dependent Activation of a Calcium-Dependent Protein Kinase from Groundnut.
- S. Chaudhuri, A. Seal, and M. D. Gupta (1999)
Plant Physiology
120, 859-866
| Abstract »
| Full Text »
- Interaction of Plant Chimeric Calcium/Calmodulin-dependent Protein Kinase with a Homolog of Eukaryotic Elongation Factor-1{alpha}.
- W. Wang and B. W. Poovaiah (1999)
J. Biol. Chem.
274, 12001-12008
| Abstract »
| Full Text »
| PDF »
- Communicating with Calcium.
- D. Sanders, C. Brownlee, and J. F. Harper (1999)
PLANT CELL
11, 691-706
| Full Text »
- ZmcPKC70, a Protein Kinase C-type Enzyme from Maize. BIOCHEMICAL CHARACTERIZATION, REGULATION BY PHORBOL 12-MYRISTATE 13-ACETATE AND ITS POSSIBLE INVOLVEMENT IN NITRATE REDUCTASE GENE EXPRESSION.
- M. R. Chandok and S. K. Sopory (1998)
J. Biol. Chem.
273, 19235-19242
| Abstract »
| Full Text »
| PDF »
- Water Transport Activity of the Plasma Membrane Aquaporin PM28A Is Regulated by Phosphorylation.
- I. Johansson, M. Karlsson, V. K. Shukla, M. J. Chrispeels, C. Larsson, and P. Kjellbom (1998)
PLANT CELL
10, 451-460
| Abstract »
| Full Text »
| PDF »
- Calcium-Dependent Protein Phosphorylation May Mediate the Gibberellic Acid Response in Barley Aleurone.
- S. Ritchie and S. Gilroy (1998)
Plant Physiology
116, 765-776
| Abstract »
| Full Text »
| PDF »
- Guard Cells Possess a Calcium-Dependent Protein Kinase That Phosphorylates the KAT1 Potassium Channel.
- J. Li, Y.-R. Julie Lee, and S. M. Assmann (1998)
Plant Physiology
116, 785-795
| Abstract »
| Full Text »
| PDF »
- Regulation of Actin Tension in Plant Cells by Kinases and Phosphatases.
- S. Grabski, E. Arnoys, B. Busch, and M. Schindler (1998)
Plant Physiology
116, 279-290
| Abstract »
| Full Text »
- Measurement of Ca2+ Fluxes during Elicitation of the Oxidative Burst in Aequorin-transformed Tobacco Cells.
- S. Chandra and P. S. Low (1997)
J. Biol. Chem.
272, 28274-28280
| Abstract »
| Full Text »
| PDF »
- Phosphorylation of Nodulin 26 on Serine 262 Affects Its Voltage-sensitive Channel Activity in Planar Lipid Bilayers.
- J. W. Lee, Y. Zhang, C. D. Weaver, N. H. Shomer, C. F. Louis, and D. M. Roberts (1995)
J. Biol. Chem.
270, 27051-27057
| Abstract »
| Full Text »
| PDF »
- Purification of µ-Calpain by a Novel Affinity Chromatography Approach.
- M. Molinari, M. Maki, and E. Carafoli (1995)
J. Biol. Chem.
270, 14576-14581
| Abstract »
| Full Text »
| PDF »
- Phosphorylation of tobacco mosaic virus cell-to-cell movement protein by a developmentally regulated plant cell wall-associated protein kinase..
- V Citovsky, B G McLean, J R Zupan, and P Zambryski (1993)
Genes & Dev.
7, 904-910
| Abstract »
| PDF »
- Plant Chimeric Ca2+/Calmodulin-dependent Protein Kinase. ROLE OF THE NEURAL VISININ-LIKE DOMAIN IN REGULATING AUTOPHOSPHORYLATION AND CALMODULIN AFFINITY.
- P. V. Sathyanarayanan, C. R. Cremo, and B. W. Poovaiah (2000)
J. Biol. Chem.
275, 30417-30422
| Abstract »
| Full Text »
| PDF »
- Toxoplasma gondii Attachment to Host Cells Is Regulated by a Calmodulin-like Domain Protein Kinase.
- H. Kieschnick, T. Wakefield, C. A. Narducci, and C. Beckers (2001)
J. Biol. Chem.
276, 12369-12377
| Abstract »
| Full Text »
| PDF »
- Rice SPK, a Calmodulin-Like Domain Protein Kinase, Is Required for Storage Product Accumulation during Seed Development: Phosphorylation of Sucrose Synthase Is a Possible Factor.
- T. Asano, N. Kunieda, Y. Omura, H. Ibe, T. Kawasaki, M. Takano, M. Sato, H. Furuhashi, T. Mujin, F. Takaiwa, et al. (2002)
PLANT CELL
14, 619-628
| Abstract »
| Full Text »
| PDF »
|
|