Structure and calcium-binding studies of a recoverin mutant (E85Q) in an allosteric intermediate state
about
The diversity of calcium sensor proteins in the regulation of neuronal functionNeuronal calcium sensor proteins: generating diversity in neuronal Ca2+ signallingMolecular structure and target recognition of neuronal calcium sensor proteinsImpact of N-terminal myristoylation on the Ca2+-dependent conformational transition in recoverinThe crystal structure of the novel calcium-binding protein AtCBL2 from Arabidopsis thalianaA Highly Conserved Cysteine of Neuronal Calcium-sensing Proteins Controls Cooperative Binding of Ca2+ to RecoverinTuning of a neuronal calcium sensorMg2+ and Ca2+ differentially regulate DNA binding and dimerization of DREAMBiophysical and functional characterization of hippocalcin mutants responsible for human dystonia.The presence of membranes or micelles induces structural changes of the myristoylated guanylate-cyclase activating protein-2.Membrane binding of the neuronal calcium sensor recoverin - modulatory role of the charged carboxy-terminus.Molecular structure and target recognition of neuronal calcium sensor proteins.Genetic polymorphism and protein conformational plasticity in the calmodulin superfamily: two ways to promote multifunctionality.Structural analysis of Mg2+ and Ca2+ binding to CaBP1, a neuron-specific regulator of calcium channels.Structural analysis of Mg2+ and Ca2+ binding, myristoylation, and dimerization of the neuronal calcium sensor and visinin-like protein 1 (VILIP-1)Structure of a Ca2+-myristoyl switch protein that controls activation of a phosphatidylinositol 4-kinase in fission yeast.Effects of Ca2+, Mg2+, and myristoylation on guanylyl cyclase activating protein 1 structure and stabilityCa2+ -dependent regulation of phototransductionNuclear magnetic resonance structure of calcium-binding protein 1 in a Ca(2+) -bound closed state: implications for target recognition.Conformational dynamics of recoverin's Ca2+-myristoyl switch probed by 15N NMR relaxation dispersion and chemical shift analysis.Double electron-electron resonance probes Ca²⁺-induced conformational changes and dimerization of recoverin.Ca2+-myristoyl switch in the neuronal calcium sensor recoverin requires different functions of Ca2+-binding sites.Fission yeast homolog of neuronal calcium sensor-1 (Ncs1p) regulates sporulation and confers calcium tolerance.Identification of residues that determine the absence of a Ca(2+)/myristoyl switch in neuronal calcium sensor-1.One of the Ca2+ binding sites of recoverin exclusively controls interaction with rhodopsin kinase.Zebrafish Recoverin Isoforms Display Differences in Calcium Switch Mechanisms
P2860
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P2860
Structure and calcium-binding studies of a recoverin mutant (E85Q) in an allosteric intermediate state
description
2002 nî lūn-bûn
@nan
2002 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2002 թվականի մայիսին հրատարակված գիտական հոդված
@hy
2002年の論文
@ja
2002年論文
@yue
2002年論文
@zh-hant
2002年論文
@zh-hk
2002年論文
@zh-mo
2002年論文
@zh-tw
2002年论文
@wuu
name
Structure and calcium-binding ...... allosteric intermediate state
@ast
Structure and calcium-binding ...... allosteric intermediate state
@en
Structure and calcium-binding ...... allosteric intermediate state
@nl
type
label
Structure and calcium-binding ...... allosteric intermediate state
@ast
Structure and calcium-binding ...... allosteric intermediate state
@en
Structure and calcium-binding ...... allosteric intermediate state
@nl
prefLabel
Structure and calcium-binding ...... allosteric intermediate state
@ast
Structure and calcium-binding ...... allosteric intermediate state
@en
Structure and calcium-binding ...... allosteric intermediate state
@nl
P2093
P356
P1433
P1476
Structure and calcium-binding ...... allosteric intermediate state
@en
P2093
James B Ames
Nobuko Hamasaki
Tatiana Molchanova
P304
P356
10.1021/BI012153K
P407
P577
2002-05-07T00:00:00Z