recoverin ; Homo sapiens






115 Article(s)
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1 1310001 Management and monitoring of cancer-associated retinopathy. Arch Ophthalmol 1992 Jan 1
2 1357792 Biochemical mechanism of light adaptation in vertebrate photoreceptors. Trends Biochem Sci 1992 Aug 2
3 1358206 Recoverin, a novel calcium-binding protein from vertebrate photoreceptors. Biochim Biophys Acta 1992 Nov 10 2
4 1422899 [Transduction of the visual signal in retinal cells]. C R Acad Sci III 1992 4
5 1454850 Calcium-myristoyl protein switch. Proc Natl Acad Sci U S A 1992 Dec 1 2
6 1467959 Recoverin in pineal organs and retinae of various vertebrate species including man. Brain Res 1992 Nov 6 1
7 1672047 Recoverin: a calcium sensitive activator of retinal rod guanylate cyclase. Science 1991 Feb 22 10
8 7488079 Regulation of rhodopsin phosphorylation by a family of neuronal calcium sensors. Biochem Biophys Res Commun 1995 Nov 2 2
9 7547868 Calcium-dependent solvation of the myristoyl group of recoverin. Biochemistry 1995 Sep 12 4
10 7568096 Recoverin, a photoreceptor-specific calcium-binding protein, is expressed by the tumor of a patient with cancer-associated retinopathy. Proc Natl Acad Sci U S A 1995 Sep 26 1
11 7630423 Sequestration of the membrane-targeting myristoyl group of recoverin in the calcium-free state. Nature 1995 Aug 3 2
12 7797536 Role of heterogeneous N-terminal acylation of recoverin in rhodopsin phosphorylation. J Biol Chem 1995 Jun 30 1
13 7859820 Recoverin: a potent uveitogen for the induction of photoreceptor degeneration in Lewis rats. Exp Eye Res 1994 Oct 1
14 7876221 Amino-terminal myristoylation induces cooperative calcium binding to recoverin. J Biol Chem 1995 Mar 3 3
15 7906682 Genetic and physical mapping of human recoverin: a gene expressed in retinal photoreceptors. Invest Ophthalmol Vis Sci 1994 Feb 3
16 7926045 Calcium-sensitive control of rhodopsin phosphorylation in the reconstituted system consisting of photoreceptor membranes, rhodopsin kinase and recoverin. FEBS Lett 1994 Oct 17 1
17 8063726 Heterogeneous N-acylation is a tissue- and species-specific posttranslational modification. J Biol Chem 1994 Aug 19 1
18 8075075 Secondary structure of myristoylated recoverin determined by three-dimensional heteronuclear NMR: implications for the calcium-myristoyl switch. Biochemistry 1994 Sep 6 1
19 8242744 Three-dimensional structure of recoverin, a calcium sensor in vision. Cell 1993 Nov 19 3
20 8276764 Recoverin alters its surface properties depending on both calcium-binding and N-terminal myristoylation. J Biochem 1993 Oct 5
21 8430337 Role of the acylated amino terminus of recoverin in Ca(2+)-dependent membrane interaction. Science 1993 Feb 5 1
22 8500558 Molecular cloning and nucleotide sequence of a cDNA encoding recoverin from human retina. Exp Eye Res 1993 Apr 2
23 8521974 N-myristoylation of recoverin enhances its efficiency as an inhibitor of rhodopsin kinase. FEBS Lett 1995 Nov 27 1
24 8537345 Nuclear magnetic resonance evidence for Ca(2+)-induced extrusion of the myristoyl group of recoverin. J Biol Chem 1995 Dec 29 9
25 8556770 Control of photoreceptor proteins by Ca2+. Cell Calcium 1995 Oct 2
26 8617359 Calcium-bound recoverin targets rhodopsin kinase to membranes to inhibit rhodopsin phosphorylation. FEBS Lett 1996 Apr 22 1
27 8666979 Recoverin in cultured human retinoblastoma cells: enhanced expression during morphological differentiation. J Neurochem 1996 Jul 6
28 8794166 Portrait of a myristoyl switch protein. Curr Opin Struct Biol 1996 Aug 4
29 8892098 Epitope recognition of recoverin in cancer associated retinopathy: evidence for calcium-dependent conformational epitopes. J Neurosci Res 1996 Sep 15 4
30 9006715 Early expression of recoverin in a unique population of neurons in the human retina. Anat Embryol (Berl) 1997 Jan 1
31 9098894 Monitoring calcium-induced conformational changes in recoverin by electrospray mass spectrometry. Protein Sci 1997 Apr 12
32 9136565 [Cancer-associated retinopathy]. Nippon Ganka Gakkai Zasshi 1997 Apr 1
33 9296500 Molecular mechanics of calcium-myristoyl switches. Nature 1997 Sep 11 3
34 9315839 Calcium-dependent binding of recoverin to membranes monitored by surface plasmon resonance spectroscopy in real time. Biochemistry 1997 Oct 7 2
35 9392525 Calcium binding to recoverin: implications for secondary structure and membrane association. Biochim Biophys Acta 1997 Oct 17 6
36 9665733 Autophosphorylation and ADP regulate the Ca2+-dependent interaction of recoverin with rhodopsin kinase. Biochemistry 1998 Jul 14 3
37 9872924 Regulation of G-protein-coupled receptor kinase subtypes by calcium sensor proteins. FASEB J 1999 Jan 3
38 10383444 Three-dimensional structure of guanylyl cyclase activating protein-2, a calcium-sensitive modulator of photoreceptor guanylyl cyclases. J Biol Chem 1999 Jul 2 1
39 10645477 [Point amino acid substitutions in the Ca2+-binding centers of recoverin. I. Mechanism of successive filling of Ca2+-binding centers]. Bioorg Khim 1999 Oct 4
40 10800672 Molecular structure of membrane-targeting calcium sensors in vision: recoverin and guanylate cyclase-activating protein 2. Methods Enzymol 2000 1
41 10816814 [Single amino acid substitutions in the Ca2+-binding site of recoverin.II.The unusual behavior of the protein upon the binding of calcium ions]. Bioorg Khim 2000 Mar 3
42 11087403 How can Ca2+ selectively activate recoverin in the presence of Mg2+? Surface plasmon resonance and FT-IR spectroscopic studies. Biochemistry 2000 Nov 28 11
43 11092894 Immunocytochemical localization and crystal structure of human frequenin (neuronal calcium sensor 1). J Biol Chem 2001 Apr 13 2
44 11108955 Regulation of G protein-coupled receptor kinase subtypes by calcium sensor proteins. Biochim Biophys Acta 2000 Dec 20 1
45 11161110 Effects of mutations in the calcium-binding sites of recoverin on its calcium affinity: evidence for successive filling of the calcium binding sites. Protein Eng 2000 Nov 9
46 11222531 Mechanisms of photoreceptor cell death in cancer-associated retinopathy. Invest Ophthalmol Vis Sci 2001 Mar 2
47 11535596 Calcium-regulated DNA binding and oligomerization of the neuronal calcium-sensing protein, calsenilin/DREAM/KChIP3. J Biol Chem 2001 Nov 2 1
48 11584009 Instead of binding calcium, one of the EF-hand structures in guanylyl cyclase activating protein-2 is required for targeting photoreceptor guanylyl cyclase. J Biol Chem 2001 Dec 21 1
49 11980481 Structure and calcium-binding studies of a recoverin mutant (E85Q) in an allosteric intermediate state. Biochemistry 2002 May 7 7
50 12023256 Measurement of membrane binding between recoverin, a calcium-myristoyl switch protein, and lipid bilayers by AFM-based force spectroscopy. Biophys J 2002 Jun 1