Department of Chemistry, Faculty of Art and Sciences, Balikesir University, Balikesir 10145, Turkey.
Bioorg Med Chem. 2012 May 1;20(9):2811-21. doi: 10.1016/j.bmc.2012.03.033. Epub 2012 Mar 23.
A newly series of 6-(phenylurenyl/thiourenyl) saccharin (6a-y) derivatives were synthesized and their inhibitory effects on the diphenolase activity of banana tyrosinase were evaluated. A 70-fold purification of the enzyme with 6.85% yield was achieved by using a Sepharose 4B-l-tyrosine-p-amino benzoic acid affinity column. The result showed that all the synthesized compounds inhibited the tyrosinase enzyme activity. Among the compounds synthesized, 6-(3-iodophenylthiourenyl) saccharin (6s) was found to be most active one (K(i)=3.95 μM) and the inhibition kinetics analyzed by Lineweaver-Burk double reciprocal plots revealed that compound 6s was a competitive inhibitor. Structure-activity relationships study showed that generally, most of the 6-(phenylthiourenyl) saccharin derivatives (6m-y) exhibited higher inhibitory activity than 6-(phenylurenyl) saccharin derivatives (6a-l). An electron-withdrawing group at 3-position of phenylurenyl-ring increased in activity and the halogen series at 3-position of phenylthiourenyl-ring showed a qualitative relationship for higher inhibitory activity with increasing size and polarizability. We also calculated HOMO-LUMO energy levels and dipole moments of some selected the synthesized compounds (6a, 6h, 6m and 6s) using Gaussian software.
新的一系列 6-(苯脲基/硫脲基) 糖精(6a-y)衍生物被合成,并评估了它们对香蕉酪氨酸酶二酚酶活性的抑制作用。通过使用 Sepharose 4B-l-酪氨酸-p-氨基苯甲酸亲和柱,实现了酶的 70 倍纯化,产率为 6.85%。结果表明,所有合成的化合物都抑制了酪氨酸酶的酶活性。在合成的化合物中,发现 6-(3-碘苯基硫脲基) 糖精(6s)是最活跃的(K(i)=3.95 μM),通过 Lineweaver-Burk 双倒数图谱分析的抑制动力学表明,化合物 6s 是一种竞争性抑制剂。构效关系研究表明,一般来说,大多数 6-(苯硫脲基) 糖精衍生物(6m-y)比 6-(苯脲基) 糖精衍生物(6a-l)具有更高的抑制活性。苯脲基环的 3-位上的吸电子基团增加了活性,而苯硫脲基环的 3-位上的卤素系列显示出与抑制活性的定性关系,随着尺寸和极化率的增加而增加。我们还使用 Gaussian 软件计算了一些选定的合成化合物(6a、6h、6m 和 6s)的 HOMO-LUMO 能级和偶极矩。