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Functional reconstitution of mammalian 'chloride intracellular channels' CLIC1, CLIC4 and CLIC5 reveals differential regulation by cytoskeletal actin
H. Singh,
M. A. Cousin
, R. H. Ashley
科研成果
:
期刊稿件
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文章
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同行评审
87
引用 (Scopus)
综述
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指纹
探究 'Functional reconstitution of mammalian 'chloride intracellular channels' CLIC1, CLIC4 and CLIC5 reveals differential regulation by cytoskeletal actin' 的科研主题。它们共同构成独一无二的指纹。
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Keyphrases
CLIC1
100%
Chloride Intracellular Channel 1
100%
CLIC4
100%
CLIC5
100%
Cytoskeletal Actin
100%
Functional Reconstitution
100%
Differential Regulation
100%
Actin
33%
Filamentous Actin (F-actin)
33%
Na +
16%
Recombinant
16%
Glutathione S-transferase
16%
Volume Cell
16%
Cell Membrane
16%
Inhibition Effect
16%
Apoptotic Cells
16%
Organelle Division
16%
Cytoskeletal Proteins
16%
Secretory Pathway
16%
Ion Channels
16%
Cell Division
16%
Solute Transport
16%
Signal Peptide
16%
Cell Volume Regulation
16%
Cytochalasin
16%
Organelle Fusion
16%
Cell Movement
16%
Fusion Cells
16%
Planar Lipid Bilayer
16%
Cellular Events
16%
Neuroscience
Actin
100%
Cell Membrane
20%
Epileptic Absence
20%
Ion Channel
20%
Signal Peptide
20%
Glutathione S-Transferase
20%
Lipid Bilayer
20%
Cell Movement
20%
Secretory Pathway
20%
Cell Volume Regulation
20%
Cytoskeleton Protein
20%
Pharmacology, Toxicology and Pharmaceutical Science
Actin
100%
Glutathione
20%
Transferase
20%
Signal Peptide
20%
Potassium Ion
20%
Ion Channel
20%
Epileptic Absence
20%
Cytoskeleton Protein
20%
Sodium Ion
20%
Cytochalasin
20%
Biochemistry, Genetics and Molecular Biology
Actin
100%
Glutathione S-Transferase
20%
Cell Membrane
20%
Lipid Bilayer
20%
Secretory Pathway
20%
Cell Movement
20%
Cytoskeletal Protein
20%
Signal Peptide
20%
Cell Volume
20%
Immunology and Microbiology
Actin
100%
Cell Membrane
20%
Cell Motion
20%
Lipid Bilayer
20%
Secretory Pathway
20%
Cell Volume
20%