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A nano switch mechanism for the redox-responsive sulfotransferase
Chih Heng Lin
, En Shyh Lin
, Tian Mu Su
, Kuo Sheng Hung
,
Yuh-Shyong Yang
*
*
Corresponding author for this work
Department of Biological Science and Technology
Research output
:
Contribution to journal
›
Article
›
peer-review
2
Scopus citations
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Keyphrases
Alcohol
14%
Amino Acid Residues
14%
Binding Activity
14%
Cellular Redox Status
14%
Circular Dichroism
14%
Conformational Change
14%
Cysteine
28%
Disulfide Bond
28%
Drug Metabolism
14%
Enzyme Active Site
14%
Enzyme Activity
14%
Enzyme Kinetics
14%
Enzyme Properties
14%
Flexible Loop
14%
Homologous Modeling
14%
Hormone Metabolism
14%
Kinetic Model
14%
Long-range Interactions
14%
Metabolism
14%
Mutant Enzyme
14%
Nanometre
14%
Nanoswitch
100%
Nucleotide Binding
14%
Pathological Process
14%
Physiological Processes
14%
Redox
14%
Redox Regulation
57%
Redox Signaling
14%
Redox Switch
14%
Redox-responsive
100%
Regulation Capacity
14%
Site-directed
14%
Sulfotransferase
100%
SULT1A1
14%
Switch Mechanism
100%
Biochemistry, Genetics and Molecular Biology
Amino Acids
14%
Binding Affinity
14%
Circular Dichroism
14%
Conformational Change
14%
Cysteine
28%
Disulfide Bond
28%
Drug Metabolism
14%
Enzyme
14%
Enzyme Active Site
14%
Enzyme Activity
14%
Enzyme Kinetics
14%
Enzyme Property
14%
Flexible Loop
14%
Hormone Metabolism
14%
Metabolic Pathway
14%
Sulfotransferase
100%
SULT1A1
14%