TY - JOUR
T1 - Species Differences in the Binding of Sodium 4-Phenylbutyrate to Serum Albumin
AU - Yamasaki, Keishi
AU - Enokida, Taisuke
AU - Taguchi, Kazuaki
AU - Miyamura, Shigeyuki
AU - Kawai, Akito
AU - Miyamoto, Shuichi
AU - Maruyama, Toru
AU - Seo, Hakaru
AU - Otagiri, Masaki
N1 - Publisher Copyright:
© 2017 American Pharmacists Association®
PY - 2017/9
Y1 - 2017/9
N2 - Sodium 4-phenylbutyrate (PB) is clinically used as a drug for treating urea cycle disorders. Recent research has shown that PB also has other pharmacologic activities, suggesting that it has the potential for use as a drug for treating other disorders. In the process of drug development, preclinical testing using experimental animals is necessary to verify the efficacy and safety of PB. Although the binding of PB to human albumin has been studied, our knowledge of its binding to albumin from the other animal species is extremely limited. To address this issue, we characterized the binding of PB to albumin from several species (human, bovine, rabbit, and rat). The results indicated that PB interacts with 1 high-affinity site of albumin from these species, which corresponds to site II of human albumin. The affinities of PB to human and bovine albumins were higher than those to rabbit and rat albumin, and that to rabbit albumin was the lowest. Binding and molecular docking studies using structurally related compounds of PB suggested that species differences in the affinity are attributed to differences in the structural feature of the PB-binding sites on albumins (e.g., charge distribution, hydrophobicity, shape, or size).
AB - Sodium 4-phenylbutyrate (PB) is clinically used as a drug for treating urea cycle disorders. Recent research has shown that PB also has other pharmacologic activities, suggesting that it has the potential for use as a drug for treating other disorders. In the process of drug development, preclinical testing using experimental animals is necessary to verify the efficacy and safety of PB. Although the binding of PB to human albumin has been studied, our knowledge of its binding to albumin from the other animal species is extremely limited. To address this issue, we characterized the binding of PB to albumin from several species (human, bovine, rabbit, and rat). The results indicated that PB interacts with 1 high-affinity site of albumin from these species, which corresponds to site II of human albumin. The affinities of PB to human and bovine albumins were higher than those to rabbit and rat albumin, and that to rabbit albumin was the lowest. Binding and molecular docking studies using structurally related compounds of PB suggested that species differences in the affinity are attributed to differences in the structural feature of the PB-binding sites on albumins (e.g., charge distribution, hydrophobicity, shape, or size).
KW - albumin
KW - distribution
KW - molecular modeling
KW - protein binding
KW - protein structure
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U2 - 10.1016/j.xphs.2017.04.025
DO - 10.1016/j.xphs.2017.04.025
M3 - Article
C2 - 28456727
AN - SCOPUS:85019671393
SN - 0022-3549
VL - 106
SP - 2860
EP - 2867
JO - Journal of Pharmaceutical Sciences
JF - Journal of Pharmaceutical Sciences
IS - 9
ER -