1CTA
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DETERMINATION OF THE SOLUTION STRUCTURE OF A SYNTHETIC TWO-SITE CALCIUM-BINDING HOMODIMERIC PROTEIN DOMAIN BY NMR SPECTROSCOPY
Descriptor:TROPONIN C SITE III - SITE III HOMODIMER, CALCIUM ION
Authors:Shaw, G.S., Sykes, B.D.
Deposit date:1992-11-12
Release date:1993-10-31
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Determination of the solution structure of a synthetic two-site calcium-binding homodimeric protein domain by NMR spectroscopy.
Biochemistry, 31, 1992
1CTD
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DETERMINATION OF THE SOLUTION STRUCTURE OF A SYNTHETIC TWO-SITE CALCIUM-BINDING HOMODIMERIC PROTEIN DOMAIN BY NMR SPECTROSCOPY
Descriptor:TROPONIN C SITE III - SITE III HOMODIMER, CALCIUM ION
Authors:Shaw, G.S., Sykes, B.D.
Deposit date:1992-11-12
Release date:1993-10-31
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Determination of the solution structure of a synthetic two-site calcium-binding homodimeric protein domain by NMR spectroscopy.
Biochemistry, 31, 1992
1FPW
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STRUCTURE OF YEAST FREQUENIN
Descriptor:CALCIUM-BINDING PROTEIN NCS-1, CALCIUM ION
Authors:Ames, J.B., Hendricks, K.B., Strahl, T., Huttner, I.G., Thorner, J.
Deposit date:2000-08-31
Release date:2000-10-18
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Structure and calcium-binding properties of Frq1, a novel calcium sensor in the yeast Saccharomyces cerevisiae.
Biochemistry, 39, 2000
1HQV
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STRUCTURE OF APOPTOSIS-LINKED PROTEIN ALG-2
Descriptor:PROGRAMMED CELL DEATH PROTEIN 6, CALCIUM ION
Authors:Jia, J., Tarabykina, S., Hansen, C., Berchtold, M., Cygler, M.
Deposit date:2000-12-19
Release date:2001-05-02
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (2.3 Å)
Cite:Structure of apoptosis-linked protein ALG-2: insights into Ca2+-induced changes in penta-EF-hand proteins.
Structure, 9, 2001
1IKU
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MYRISTOYLATED RECOVERIN IN THE CALCIUM-FREE STATE, NMR, 22 STRUCTURES
Descriptor:RECOVERIN, MYRISTIC ACID
Authors:Tanaka, T., Ames, J.B., Harvey, T.S., Stryer, L., Ikura, M.
Deposit date:1996-01-18
Release date:1996-07-11
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Sequestration of the membrane-targeting myristoyl group of recoverin in the calcium-free state.
Nature, 376, 1995
1JBA
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UNMYRISTOYLATED GCAP-2 WITH THREE CALCIUM IONS BOUND
Descriptor:PROTEIN (GUANYLATE CYCLASE ACTIVATING PROTEIN 2), CALCIUM ION
Authors:Ames, J.B., Dizhoor, A.M., Ikura, M., Palczewski, K., Stryer, L.
Deposit date:1999-04-03
Release date:1999-12-10
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Three-dimensional structure of guanylyl cyclase activating protein-2, a calcium-sensitive modulator of photoreceptor guanylyl cyclases.
J.Biol.Chem., 274, 1999
1JC2
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COMPLEX OF THE C-DOMAIN OF TROPONIN C WITH RESIDUES 1-40 OF TROPONIN I
Descriptor:TROPONIN C, SKELETAL MUSCLE, CALCIUM ION
Authors:Mercier, P., Spyracopoulos, L., Sykes, B.D.
Deposit date:2001-06-07
Release date:2001-09-14
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Structure, dynamics, and thermodynamics of the structural domain of troponin C in complex with the regulatory peptide 1-40 of troponin I
Biochemistry, 40, 2001
1JSA
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MYRISTOYLATED RECOVERIN WITH TWO CALCIUMS BOUND, NMR, 24 STRUCTURES
Descriptor:RECOVERIN, CALCIUM ION, MYRISTIC ACID
Authors:Ames, J.B., Ishima, R., Tanaka, T., Gordon, J.I., Stryer, L., Ikura, M.
Deposit date:1997-06-04
Release date:1997-10-15
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Molecular mechanics of calcium-myristoyl switches.
Nature, 389, 1997
1LA3
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SOLUTION STRUCTURE OF RECOVERIN MUTANT, E85Q
Descriptor:Recoverin, CALCIUM ION, MYRISTIC ACID
Authors:Ames, J.B., Hamasaki, N., Molchanova, T.
Deposit date:2002-03-27
Release date:2002-06-19
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Structure and calcium-binding studies of a recoverin mutant (E85Q) in an allosteric intermediate state.
Biochemistry, 41, 2002
1OMR
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NON-MYRISTOYLATED WILD-TYPE BOVINE RECOVERIN WITH CALCIUM BOUND TO EF-HAND 3
Descriptor:recoverin, CALCIUM ION
Authors:Weiergraber, O.H., Granzin, J.
Deposit date:2003-02-26
Release date:2003-11-25
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (1.5 Å)
Cite:Impact of N-terminal myristoylation on the Ca2+-dependent conformational transition in recoverin
J.Biol.Chem., 278, 2003
1OMV
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NON-MYRISTOYLATED BOVINE RECOVERIN (E85Q MUTANT) WITH CALCIUM BOUND TO EF-HAND 3
Descriptor:recoverin, CALCIUM ION
Authors:Weiergraber, O.H., Granzin, J.
Deposit date:2003-02-26
Release date:2003-11-25
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (1.9 Å)
Cite:Impact of N-terminal myristoylation on the Ca2+-dependent conformational transition in recoverin
J.Biol.Chem., 278, 2003
1PON
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SITE III-SITE IV TROPONIN C HETERODIMER, NMR
Descriptor:TROPONIN C
Authors:Shaw, G.S., Sykes, B.D.
Deposit date:1996-04-02
Release date:1996-11-08
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:NMR solution structure of a synthetic troponin C heterodimeric domain.
Biochemistry, 35, 1996
1REC
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THREE-DIMENSIONAL STRUCTURE OF RECOVERIN, A CALCIUM SENSOR IN VISION
Descriptor:RECOVERIN, CALCIUM ION
Authors:Flaherty, K.M., Zozulya, S., Stryer, L., Mckay, D.B.
Deposit date:1993-10-29
Release date:1994-01-31
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (1.9 Å)
Cite:Three-Dimensional Structure of Recoverin, a Calcium Sensor in Vision
Cell(Cambridge,Mass.), 75, 1993
1S6I
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CA2+-REGULATORY REGION (CLD) FROM SOYBEAN CALCIUM-DEPENDENT PROTEIN KINASE-ALPHA (CDPK) IN THE PRESENCE OF CA2+ AND THE JUNCTION DOMAIN (JD)
Descriptor:Calcium-dependent protein kinase SK5, CALCIUM ION
Authors:Weljie, A.M., Vogel, H.J.
Deposit date:2004-01-23
Release date:2004-06-15
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Unexpected structure of the Ca2+-regulatory region from soybean calcium-dependent protein kinase-alpha
J.Biol.Chem., 279, 2004
1S6J
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N-TERMINAL REGION OF THE CA2+-SATURATED CALCIUM REGULATORY DOMAIN (CLD) FROM SOYBEAN CALCIUM-DEPENDENT PROTEIN KINASE-ALPHA (CDPK)
Descriptor:Calcium-dependent protein kinase SK5, CALCIUM ION
Authors:Weljie, A.M., Vogel, H.J.
Deposit date:2004-01-23
Release date:2004-12-21
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Solution Structure and Backbone Dynamics of the N-Terminal Region of the Calcium Regulatory Domain from Soybean Calcium-Dependent Protein Kinase alpha
Biochemistry, 42, 2004
2AAO
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REGULATORY APPARATUS OF CALCIUM DEPENDENT PROTEIN KINASE FROM ARABIDOPSIS THALIANA
Descriptor:Calcium-dependent protein kinase, isoform AK1, CALCIUM ION
Authors:Chandran, V., Stollar, E.J., Lindorff-Larsen, K., Harper, J.F., Chazin, W.J., Dobson, C.M., Luisi, B.F., Christodoulou, J.
Deposit date:2005-07-13
Release date:2005-12-27
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (2 Å)
Cite:Structure of the regulatory apparatus of a calcium-dependent protein kinase (CDPK): a novel mode of calmodulin-target recognition.
J.Mol.Biol., 357, 2006
2DOQ
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CRYSTAL STRUCTURE OF SFI1P/CDC31P COMPLEX
Descriptor:Cell division control protein 31, SFI1p, CALCIUM ION
Authors:Li, S., Sandercock, A.M., Conduit, P.T., Robinson, C.V., Williams, R.L., Kilmartin, J.V.
Deposit date:2006-05-03
Release date:2006-06-27
Last modified:2017-10-11
Method:X-RAY DIFFRACTION (3 Å)
Cite:Structural role of Sfi1p-centrin filaments in budding yeast spindle pole body duplication.
J.Cell Biol., 173, 2006
2E30
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SOLUTION STRUCTURE OF THE CYTOPLASMIC REGION OF NA+/H+ EXCHANGER 1 COMPLEXED WITH ESSENTIAL COFACTOR CALCINEURIN B HOMOLOGOUS PROTEIN 1
Descriptor:Calcium-binding protein p22, Sodium/hydrogen exchanger 1, CALCIUM ION
Authors:Mishima, M., Wakabayashi, S., Kojima, C.
Deposit date:2006-11-19
Release date:2006-12-19
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Solution structure of the cytoplasmic region of Na+/H+ exchanger 1 complexed with essential cofactor calcineurin B homologous protein 1
J.Biol.Chem., 282, 2007
2GGZ
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CRYSTAL STRUCTURE OF HUMAN GUANYLATE CYCLASE ACTIVATING PROTEIN-3
Descriptor:Guanylyl cyclase-activating protein 3, CALCIUM ION
Authors:Stephen, R.
Deposit date:2006-03-24
Release date:2006-05-23
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (3 Å)
Cite:The Crystal Structure of GCAP3 Suggests Molecular Mechanism of GCAP-linked Cone Dystrophies.
J.Mol.Biol., 359, 2006
2GV5
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CRYSTAL STRUCTURE OF SFI1P/CDC31P COMPLEX
Descriptor:Cell division control protein 31, Sfi1p
Authors:Li, S., Sandercock, A.M., Conduit, P.T., Robinson, C.V., Williams, R.L., Kilmartin, J.V.
Deposit date:2006-05-02
Release date:2006-06-27
Last modified:2017-10-18
Method:X-RAY DIFFRACTION (3 Å)
Cite:Structural role of Sfi1p-centrin filaments in budding yeast spindle pole body duplication.
J.Cell Biol., 173, 2006
2HET
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NON-MYRISTOYLATED BOVINE RECOVERIN (TRUNCATED AT C-TERMINUS) WITH CALCIUM BOUND TO EF-HAND 3
Descriptor:Recoverin, CALCIUM ION
Authors:Weiergraber, O.H., Granzin, J.
Deposit date:2006-06-22
Release date:2006-10-17
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (3 Å)
Cite:Tuning of a neuronal calcium sensor.
J.Biol.Chem., 281, 2006
2I94
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NMR STRUCTURE OF RECOVERIN BOUND TO RHODOPSIN KINASE
Descriptor:Recoverin, Rhodopsin kinase, CALCIUM ION
Authors:Ames, J.B.
Deposit date:2006-09-05
Release date:2006-10-10
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Structural Basis for Calcium-induced Inhibition of Rhodopsin Kinase by Recoverin.
J.Biol.Chem., 281, 2006
2K7C
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NMR STRUCTURE OF MG2+-BOUND CABP1 C-DOMAIN
Descriptor:Calcium-binding protein 1
Authors:Ames, J.
Deposit date:2008-08-08
Release date:2008-11-25
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:NMR Structure of Mg2+-bound CaBP1 C-domain
To be Published
2K7D
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NMR STRUCTURE OF CA2+-BOUND CABP1 C-DOMAIN
Descriptor:Calcium-binding protein 1, CALCIUM ION
Authors:Ames, J.
Deposit date:2008-08-08
Release date:2008-11-25
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:NMR Structure of Ca2+-bound CaBP1 C-domain
To be Published
2KN2
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SOLUTION STRUCTURE OF THE C-TERMINAL DOMAIN OF SOYBEAN CALMODULIN ISOFORM 4 FUSED WITH THE CALMODULIN-BINDING DOMAIN OF NTMKP1
Descriptor:Calmodulin, CALCIUM ION
Authors:Ishida, H., Rainaldi, M., Vogel, H.J.
Deposit date:2009-08-12
Release date:2009-08-25
Last modified:2011-07-13
Method:SOLUTION NMR
Cite:Structural studies of soybean calmodulin isoform 4 bound to the calmodulin-binding domain of tobacco mitogen-activated protein kinase phosphatase-1 provide insights into a sequential target binding mode.
J.Biol.Chem., 284, 2009
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