It is known that catechins interact with the tryptophan (Trp) residue at the drug-binding site of serum albumin. In this study, we used catechin derivatives to investigate which position of the catechin structure strongly influences the binding affinity against bovine serum albumin (BSA) and human serum albumin (HSA). A docking simulation showed that (−)-epigallocatechin gallate (EGCg) interacted with both Trp residues of BSA (one at drug-binding site I and the other on the molecular surface), mainly by π–π stacking. Fluorescence analysis showed that EGCg and substituted EGCg caused a red shift of the peak wavelength of Trp similarly to warfarin (a drug-binding site I-specific compound), while 3-O-acyl-catechins caused a blue shift. To eval...
The relationship between the molecular structure of dietary flavonoids and their affinities for bovi...
WOS: 000372251500016PubMed ID: 26839039Carbonylation is an irreversible modification in oxidized pro...
Parameters for binding of catechins and ethyl gallate to human serum albumin.</p
It is known that catechins interact with the tryptophan (Trp) residue at the drug-binding site of se...
The natural antioxidant-associated biological responses appear contradictory since biologically acti...
Catechins, biologically active polyphenols in green tea, exhibit various biological activities, such...
The health benefits stemming from green tea are well known, but the exact mechanism of its biologica...
To explore the inhibitory mechanism of catechins for digestive enzymes, we investigated the binding ...
To explore the inhibitory mechanism of catechins for digestive enzymes, we investigated the binding ...
Epidemiological and laboratory studies have shown that green tea and green tea catechins exert benef...
Catechins, biologically active polyphenols in green tea, exhibit various biological activities, such...
To explore the inhibitory mechanism of catechins for digestive enzymes, we investigated the binding ...
Epidemiological and laboratory studies have shown that green tea and green tea catechins exert benef...
The health benefits stemming from green tea are well known, but the exact mechanism of its biologica...
Abstract: The relationship between the molecular structure of dietary flavonoids and their affinitie...
The relationship between the molecular structure of dietary flavonoids and their affinities for bovi...
WOS: 000372251500016PubMed ID: 26839039Carbonylation is an irreversible modification in oxidized pro...
Parameters for binding of catechins and ethyl gallate to human serum albumin.</p
It is known that catechins interact with the tryptophan (Trp) residue at the drug-binding site of se...
The natural antioxidant-associated biological responses appear contradictory since biologically acti...
Catechins, biologically active polyphenols in green tea, exhibit various biological activities, such...
The health benefits stemming from green tea are well known, but the exact mechanism of its biologica...
To explore the inhibitory mechanism of catechins for digestive enzymes, we investigated the binding ...
To explore the inhibitory mechanism of catechins for digestive enzymes, we investigated the binding ...
Epidemiological and laboratory studies have shown that green tea and green tea catechins exert benef...
Catechins, biologically active polyphenols in green tea, exhibit various biological activities, such...
To explore the inhibitory mechanism of catechins for digestive enzymes, we investigated the binding ...
Epidemiological and laboratory studies have shown that green tea and green tea catechins exert benef...
The health benefits stemming from green tea are well known, but the exact mechanism of its biologica...
Abstract: The relationship between the molecular structure of dietary flavonoids and their affinitie...
The relationship between the molecular structure of dietary flavonoids and their affinities for bovi...
WOS: 000372251500016PubMed ID: 26839039Carbonylation is an irreversible modification in oxidized pro...
Parameters for binding of catechins and ethyl gallate to human serum albumin.</p