Stable and controllable RNA interference: Investigating the physiological function of glutathionylated actin.
about
Expressing functional siRNAs in mammalian cells using convergent transcriptionConditional knockdown of Fgfr2 in mice using Cre-LoxP induced RNA interferenceMechanisms of altered redox regulation in neurodegenerative diseases--focus on S--glutathionylationProtein glutathionylation in cardiovascular diseasesSilencing Status Epilepticus-Induced BDNF Expression with Herpes Simplex Virus Type-1 Based Amplicon VectorsThioredoxins function as deglutathionylase enzymes in the yeast Saccharomyces cerevisiae.Glutaredoxin modulates platelet-derived growth factor-dependent cell signaling by regulating the redox status of low molecular weight protein-tyrosine phosphataseGlutaredoxin regulates nuclear factor kappa-B and intercellular adhesion molecule in Müller cells: model of diabetic retinopathyS-glutathionylation: from molecular mechanisms to health outcomesProtein Cysteines Map to Functional Networks According to Steady-state Level of Oxidation.Cross-linking protein glutathionylation mediated by O2-arylated bis-diazeniumdiolate "Double JS-K".Genome-wide screening for gene function using RNAi in mammalian cells.Selective inactivation of glutaredoxin by sporidesmin and other epidithiopiperazinedionesLentiviral vectors encoding tetracycline-dependent repressors and transactivators for reversible knockdown of gene expression: a comparative study.Glutathionylation of beta-actin via a cysteinyl sulfenic acid intermediaryProtein thiol oxidation in murine airway epithelial cells in response to naphthalene or diethyl maleateMechanistic and kinetic details of catalysis of thiol-disulfide exchange by glutaredoxins and potential mechanisms of regulationAttenuated cardiovascular hypertrophy and oxidant generation in response to angiotensin II infusion in glutaredoxin-1 knockout mice.The cysteine-rich protein thimet oligopeptidase as a model of the structural requirements for S-glutathiolation and oxidative oligomerization.Selective field effects on intracellular vacuoles and vesicle membranes with nanosecond electric pulses.Regulation of DJ-1 by Glutaredoxin 1 in Vivo: Implications for Parkinson's Disease.SUMOylation of nuclear actinInducible suppression of Fgfr2 and Survivin in ES cells using a combination of the RNA interference (RNAi) and the Cre-LoxP system.Glutathionylation of peroxiredoxin I induces decamer to dimers dissociation with concomitant loss of chaperone activity.Temporal changes in glutaredoxin 1 and protein s-glutathionylation in allergic airway inflammationLevodopa deactivates enzymes that regulate thiol-disulfide homeostasis and promotes neuronal cell death: implications for therapy of Parkinson's disease.RNAi-based conditional gene knockdown in mice using a U6 promoter driven vectorNADPH oxidase 4 mediates monocyte priming and accelerated chemotaxis induced by metabolic stress.Cigarette smoke targets glutaredoxin 1, increasing s-glutathionylation and epithelial cell death.Protein glutathionylation in the regulation of peroxiredoxins: a family of thiol-specific peroxidases that function as antioxidants, molecular chaperones, and signal modulators.Application of RNA interference to study stem cell function: current status and future perspectives.On the delivery of small interfering RNAs into mammalian cells.Glutaredoxin 1 protects dopaminergic cells by increased protein glutathionylation in experimental Parkinson's disease.Aryl bis(diazeniumdiolates): potent inducers of S-glutathionylation of cellular proteins and their in vitro antiproliferative activitiesS-glutathionylation in monocyte and macrophage (dys)function.Molecular mechanisms and clinical implications of reversible protein S-glutathionylation.Nuclear actin and myosins: life without filaments.Cardiac transcriptional response to acute and chronic angiotensin II treatments.RNAi Technique in Stem Cell Research: Current Status and Future Perspectives.Protein Thiol Redox Signaling in Monocytes and Macrophages.
P2860
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P2860
Stable and controllable RNA interference: Investigating the physiological function of glutathionylated actin.
description
2003 nî lūn-bûn
@nan
2003 թուականի Ապրիլին հրատարակուած գիտական յօդուած
@hyw
2003 թվականի ապրիլին հրատարակված գիտական հոդված
@hy
2003年の論文
@ja
2003年論文
@yue
2003年論文
@zh-hant
2003年論文
@zh-hk
2003年論文
@zh-mo
2003年論文
@zh-tw
2003年论文
@wuu
name
Stable and controllable RNA in ...... ion of glutathionylated actin.
@ast
Stable and controllable RNA in ...... ion of glutathionylated actin.
@en
Stable and controllable RNA in ...... ion of glutathionylated actin.
@nl
type
label
Stable and controllable RNA in ...... ion of glutathionylated actin.
@ast
Stable and controllable RNA in ...... ion of glutathionylated actin.
@en
Stable and controllable RNA in ...... ion of glutathionylated actin.
@nl
prefLabel
Stable and controllable RNA in ...... ion of glutathionylated actin.
@ast
Stable and controllable RNA in ...... ion of glutathionylated actin.
@en
Stable and controllable RNA in ...... ion of glutathionylated actin.
@nl
P2093
P2860
P356
P1476
Stable and controllable RNA in ...... ion of glutathionylated actin.
@en
P2093
Earl R Stadtman
Ephrem Tekle
Hammou Oubrahim
John J Mieyal
P Boon Chock
P2860
P304
P356
10.1073/PNAS.0931345100
P407
P577
2003-04-15T00:00:00Z