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1.
J Biol Chem ; 281(49): 37594-602, 2006 Dec 08.
Article in English | MEDLINE | ID: mdl-17015448

ABSTRACT

Recoverin is a Ca(2+)-regulated signal transduction modulator expressed in the vertebrate retina that has been implicated in visual adaptation. An intriguing feature of recoverin is a cluster of charged residues at its C terminus, the functional significance of which is largely unclear. To elucidate the impact of this segment on recoverin structure and function, we have investigated a mutant lacking the C-terminal 12 amino acids. Whereas in myristoylated recoverin the truncation causes an overall decrease in Ca(2+) sensitivity, results for the non-myristoylated mutant indicate that the truncation primarily affects the high affinity EF-hand 3. The three-dimensional structure of the mutant has been determined by x-ray crystallography. In addition to significant changes in average coordinates compared with wild-type recoverin, the structure provides strong indication of increased conformational flexibility, particularly in the C-terminal domain. Based on these observations, we propose a novel role of the C-terminal segment of recoverin as an internal modulator of Ca(2+) sensitivity.


Subject(s)
Calcium Signaling/physiology , Recoverin/metabolism , Rod Cell Outer Segment/metabolism , Animals , Base Sequence , Cattle , Crystallography, X-Ray , DNA Primers/genetics , In Vitro Techniques , Kinetics , Models, Molecular , Mutagenesis, Site-Directed , Protein Structure, Quaternary , Recombinant Proteins/chemistry , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Recoverin/chemistry , Recoverin/genetics , Sequence Deletion , Surface Plasmon Resonance
2.
J Proteome Res ; 2(1): 51-7, 2003.
Article in English | MEDLINE | ID: mdl-12643543

ABSTRACT

Recoverin is an N-myristoylated 23 kDa calcium-binding protein from retina, which modulates the Ca2+-sensitive deactivation of rhodopsin via Ca2+-dependent inhibition of rhodopsin kinase. It was shown by intrinsic and bis-ANS probe fluorescence, circular dichroism, and differential scanning calorimetry that myristoylated recombinant recoverin interacts specifically with zinc ions. Similar to the calcium binding, the binding of zinc to Ca2+-loaded recoverin additionally increases its alpha-helical content, hydrophobic surface area, and environmental mobility/polarity of its tryptophan residues. In contrast to the calcium binding, the binding of zinc decreases thermal stability of the Ca2+-loaded protein. Zn2+-titration of recoverin, traced by bis-ANS fluorescence, reveals binding of a single Zn2+ ion per protein molecule. It was shown that the double-mutant E85Q/E121Q with inactivated Ca2+-binding EF-hands 2 and 3 (Alekseev, A. M.; Shulga-Morskoy, S. V.; Zinchenko, D. V.; Shulga-Morskaya, S. A.; Suchkov, D. V.; Vaganova, S. A.; Senin, I. I.; Zargarov, A. A.; Lipkin, V. M.; Akhtar, M.; Philippov, P. P. FEBS Lett. 1998, 440, 116-118), which can be considered as an analogue of the apo-protein, binds Zn2+ ion as well. Apparent zinc equilibrium binding constants evaluated from spectrofluorimetric Zn2+-titrations of the protein are 1.4 x 10(5) M(-1) (dissociation constant 7.1 microM) for Ca2+-loaded wild-type recoverin and 3.3 x 10(4) M(-1) (dissociation constant 30 microM) for the E85Q/E121Q mutant (analogue of apo-recoverin). Study of the binding of wild-type recoverin to ROS membranes showed a zinc-dependent increase of its affinity for the membranes, without regard to calcium content, suggesting further solvation of a protein myristoyl group upon Zn2+ binding. Possible implications of these findings to the functioning of recoverin are discussed.


Subject(s)
Calcium-Binding Proteins/chemistry , Calcium-Binding Proteins/physiology , Eye Proteins , Lipoproteins , Nerve Tissue Proteins , Rod Cell Outer Segment/metabolism , Zinc/metabolism , Anilino Naphthalenesulfonates/pharmacology , Animals , Calcium/metabolism , Calorimetry , Calorimetry, Differential Scanning , Cattle , Cell Membrane/metabolism , Circular Dichroism , Dose-Response Relationship, Drug , Escherichia coli/metabolism , Hippocalcin , Ions , Models, Chemical , Mutagenesis, Site-Directed , Mutation , Protein Binding , Protein Structure, Tertiary , Recoverin , Spectrometry, Fluorescence/methods , Temperature , Thermodynamics
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