Cu(I)-mediated Allosteric Switching in a Copper-sensing Operon Repressor (CsoR)
about
Structural insights into conformational switching in the copper metalloregulator CsoR from Streptomyces lividansThe mechanism of a formaldehyde-sensing transcriptional regulatorThe CsoR-like sulfurtransferase repressor (CstR) is a persulfide sensor in Staphylococcus aureusCopper transport and trafficking at the host-bacterial pathogen interface.Resolution of Stepwise Cooperativities of Copper Binding by the Homotetrameric Copper-Sensitive Operon Repressor (CsoR): Impact on Structure and Stability.The Effectors and Sensory Sites of Formaldehyde-responsive Regulator FrmR and Metal-sensing VariantFunctional characterization of a csoR-cueA divergon in Bradyrhizobium liaoningense CCNWSX0360, involved in copper, zinc and cadmium cotolerance.An XAS investigation of the nickel site structure in the transcriptional regulator InrS.Genetic basis and importance of metal resistant genes in bacteria for bioremediation of contaminated environments with toxic metal pollutants.Glutamate Ligation in the Ni(II)- and Co(II)-Responsive Escherichia coli Transcriptional Regulator, RcnR.Metallochaperones and metalloregulation in bacteria.Copper and nickel bind via two distinct kinetic mechanisms to a CsoR metalloregulator.Generating a Metal-responsive Transcriptional Regulator to Test What Confers Metal Sensing in CellsA comprehensive phylogenetic analysis of copper transporting P1B ATPases from bacteria of the Rhizobiales order uncovers multiplicity, diversity and novel taxonomic subtypes.A tight tunable range for Ni(II) sensing and buffering in cells.Sulfide-responsive transcriptional repressor SqrR functions as a master regulator of sulfide-dependent photosynthesisCopper Chaperone CupA and Zinc Control CopY Regulation of the Pneumococcal cop OperonPenicillin-binding protein encoded by pbp4 is involved in mediating copper stress in Listeria monocytogenes.Co(II) and Ni(II) binding of the Escherichia coli transcriptional repressor RcnR orders its N terminus, alters helix dynamics, and reduces DNA affinity.Synergistic effect of copper and low temperature over Listeria monocytogenes.
P2860
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P2860
Cu(I)-mediated Allosteric Switching in a Copper-sensing Operon Repressor (CsoR)
description
2014 nî lūn-bûn
@nan
2014 թուականի Յուլիսին հրատարակուած գիտական յօդուած
@hyw
2014 թվականի հուլիսին հրատարակված գիտական հոդված
@hy
2014年の論文
@ja
2014年論文
@yue
2014年論文
@zh-hant
2014年論文
@zh-hk
2014年論文
@zh-mo
2014年論文
@zh-tw
2014年论文
@wuu
name
Cu(I)-mediated Allosteric Switching in a Copper-sensing Operon Repressor (CsoR)
@ast
Cu(I)-mediated Allosteric Switching in a Copper-sensing Operon Repressor (CsoR)
@en
Cu(I)-mediated Allosteric Switching in a Copper-sensing Operon Repressor (CsoR)
@nl
type
label
Cu(I)-mediated Allosteric Switching in a Copper-sensing Operon Repressor (CsoR)
@ast
Cu(I)-mediated Allosteric Switching in a Copper-sensing Operon Repressor (CsoR)
@en
Cu(I)-mediated Allosteric Switching in a Copper-sensing Operon Repressor (CsoR)
@nl
prefLabel
Cu(I)-mediated Allosteric Switching in a Copper-sensing Operon Repressor (CsoR)
@ast
Cu(I)-mediated Allosteric Switching in a Copper-sensing Operon Repressor (CsoR)
@en
Cu(I)-mediated Allosteric Switching in a Copper-sensing Operon Repressor (CsoR)
@nl
P2093
P2860
P3181
P356
P1476
Cu(I)-mediated allosteric switching in a copper-sensing operon repressor (CsoR)
@en
P2093
Alejandro García-de los Santos
Charles E Dann
Ciro Cubillas
Feng-Ming James Chang
H Jerome Coyne
John D Helmann
Xianyang Fang
Yun-Xing Wang
P2860
P304
19204-19217
P3181
P356
10.1074/JBC.M114.556704
P407
P577
2014-05-15T00:00:00Z