Crystal structure of the signaling helix coiled-coil domain of the β1 subunit of the soluble guanylyl cyclase
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Crystal structures of the catalytic domain of human soluble guanylate cyclaseProtein and Signaling Networks in Vertebrate Photoreceptor CellsCrystal structure of the Alpha subunit PAS domain from soluble guanylyl cyclaseInterfacial residues promote an optimal alignment of the catalytic center in human soluble guanylate cyclase: heterodimerization is required but not sufficient for activity.Identification of residues in the heme domain of soluble guanylyl cyclase that are important for basal and stimulated catalytic activityHigher-order interactions bridge the nitric oxide receptor and catalytic domains of soluble guanylate cyclase.Fluorescent fusion proteins of soluble guanylyl cyclase indicate proximity of the heme nitric oxide domain and catalytic domain.Heat Shock Protein 90 Associates with the Per-Arnt-Sim Domain of Heme-free Soluble Guanylate Cyclase: IMplications for Enzyme Maturation.Computational exploration of the binding mode of heme-dependent stimulators into the active catalytic domain of soluble guanylate cyclase.Molecular model of a soluble guanylyl cyclase fragment determined by small-angle X-ray scattering and chemical cross-linking.YC-1 binding to the β subunit of soluble guanylyl cyclase overcomes allosteric inhibition by the α subunit.Single-particle EM reveals the higher-order domain architecture of soluble guanylate cyclase.Probing the Molecular Mechanism of Human Soluble Guanylate Cyclase Activation by NO in vitro and in vivo.Regulation of soluble guanylate cyclase by matricellular thrombospondins: implications for blood flow.Nitric oxide-induced conformational changes in soluble guanylate cyclaseThe chemistry and biology of soluble guanylate cyclase stimulators and activators.Structures of soluble guanylate cyclase: implications for regulatory mechanisms and drug development.Structure and Activation of Soluble Guanylyl Cyclase, the Nitric Oxide Sensor.Characterization of a novel signal transducer element intrinsic to class IIIa/b adenylate cyclases and guanylate cyclases.A rhodopsin-guanylyl cyclase gene fusion functions in visual perception in a fungus.Nitric oxide activation of guanylate cyclase pushes the α1 signaling helix and the β1 heme-binding domain closer to the substrate-binding site.The S-helix determines the signal in a Tsr receptor/adenylyl cyclase reporter.Inhibition of soluble guanylyl cyclase by small molecules targeting the catalytic domainRole of the nucleotidyl cyclase helical domain in catalytically active dimer formation.Structure/function of the soluble guanylyl cyclase catalytic domain.
P2860
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P2860
Crystal structure of the signaling helix coiled-coil domain of the β1 subunit of the soluble guanylyl cyclase
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2010 nî lūn-bûn
@nan
2010 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
2010 թվականի հունվարին հրատարակված գիտական հոդված
@hy
2010年の論文
@ja
2010年論文
@yue
2010年論文
@zh-hant
2010年論文
@zh-hk
2010年論文
@zh-mo
2010年論文
@zh-tw
2010年论文
@wuu
name
Crystal structure of the signa ...... f the soluble guanylyl cyclase
@ast
Crystal structure of the signa ...... f the soluble guanylyl cyclase
@en
Crystal structure of the signa ...... f the soluble guanylyl cyclase
@nl
type
label
Crystal structure of the signa ...... f the soluble guanylyl cyclase
@ast
Crystal structure of the signa ...... f the soluble guanylyl cyclase
@en
Crystal structure of the signa ...... f the soluble guanylyl cyclase
@nl
prefLabel
Crystal structure of the signa ...... f the soluble guanylyl cyclase
@ast
Crystal structure of the signa ...... f the soluble guanylyl cyclase
@en
Crystal structure of the signa ...... f the soluble guanylyl cyclase
@nl
P2860
P356
P1476
Crystal structure of the signa ...... f the soluble guanylyl cyclase
@en
P2093
Annie Beuve
Xiaolei Ma
P2860
P2888
P356
10.1186/1472-6807-10-2
P577
2010-01-27T00:00:00Z
P5875
P6179
1043295296