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Transition-state structure of human 5′-methylthioadenosine phosphorylase
Vipender Singh,
Vern L. Schramm
Biochemistry
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peer-review
44
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Medicine & Life Sciences
5'-methylthioadenosine phosphorylase
100%
Isotopes
61%
Kinetics
33%
Carbon
15%
5'-methylthioadenosine
9%
Density Functional Theory
8%
Oxygen
7%
Pemetrexed
6%
Catalysis
6%
Adenine
6%
Sulfur
6%
Phosphates
4%
Chemical Compounds
Transition State Structure
71%
Kinetic Isotope Effect
61%
Transition State
30%
Zwitterion
14%
Isotope Effect
12%
Nucleophile
10%
Carbon Atom
8%
Hyperconjugation
8%
Bond Order
7%
Dioxygen
6%
Adenine
5%
Ionization
4%
Polarization
4%
Phosphate
4%
Catalysis
4%
Density Functional Theory
3%
Engineering & Materials Science
Isotopes
69%
Nucleophiles
21%
Carbon
11%
Oxygen
8%
Density functional theory
7%
Catalysis
6%
Ionization
6%
Conformations
6%
Phosphates
5%
Sulfur
4%
Polarization
4%