Cheng Run, Shi Wenyan, Yuan Qingyun, Tang Ruiren, Wang Yujie, Yang Di, Xiao Xin, Zeng Jianping, Chen Jingwen, Wang Yanqing
College of Chemistry and Chemical Engineering, Central South University, Changsha 410000, PR China; School of Chemistry and Chemical Engineering, Building Materials Research Academy, Yancheng Institute of Technology, Jianjun East Rd. 211, Yancheng 224051, PR China.
School of Chemistry and Chemical Engineering, Building Materials Research Academy, Yancheng Institute of Technology, Jianjun East Rd. 211, Yancheng 224051, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2021 Jul 5;255:119669. doi: 10.1016/j.saa.2021.119669. Epub 2021 Mar 9.
Seven isatin-thiosemicarbazone analogues bearing different substituents (R) attached at C-5 of the indoline ring, TSC-ISA-R (R = -H, -CH, -OCH, -OCF, -F, -Cl and -NO), were synthesized and evaluated as inhibitors of mushroom tyrosinase (TYR). The inhibitory behaviour and performance of TSC-ISA-R were investigated spectroscopically in relation to the substituent modifications through examining their inhibition against the diphenolase activity of TYR using L-DOPA as a substrate. The IC values of TSC-ISA-R were determined to be in the range of 81-209 μM. The kinetic analysis showed that TSC-ISA-R were reversible and mixed type inhibitors. Three potential non-covalent interactions rather than complexation including the binding of TSC-ISA-R with free TYR, TYR-L-DOPA complex, and with substrate L-DOPA were found to be involved in the inhibition. The substituent modifications affected these interactions by varying the characters of the resulting TSC-ISA-R in different degrees. The thiosemicarbazido moiety of each TSC-ISA-R contributed predominantly to the inhibition, and the isatin moiety seemed to play a regulatory role in the binding of TSC-ISA-R to the target molecules. The results of theoretical calculations using density functional theory method indicated a different effect of -R on the electron distribution in HOMO of TSC-ISA-R. The LUMO-HOMO energy gap of TSC-ISA-R almost accords with the trend of their experimental inhibition potency.
合成了7种在吲哚啉环C-5位带有不同取代基(R)的异吲哚酮-硫代氨基脲类似物TSC-ISA-R(R = -H、-CH、-OCH、-OCF、-F、-Cl和-NO),并将其作为蘑菇酪氨酸酶(TYR)的抑制剂进行了评估。通过以L-DOPA为底物检测TSC-ISA-R对TYR双酚酶活性的抑制作用,从光谱学角度研究了TSC-ISA-R的抑制行为和性能与取代基修饰的关系。TSC-ISA-R的IC值在81-209 μM范围内。动力学分析表明,TSC-ISA-R是可逆的混合型抑制剂。发现TSC-ISA-R与游离TYR、TYR-L-DOPA复合物以及底物L-DOPA之间的三种潜在非共价相互作用而非络合作用参与了抑制过程。取代基修饰通过不同程度地改变所得TSC-ISA-R的特性来影响这些相互作用。每个TSC-ISA-R的硫代氨基脲部分对抑制作用起主要作用,而异吲哚酮部分似乎在TSC-ISA-R与靶分子的结合中起调节作用。使用密度泛函理论方法进行的理论计算结果表明,-R对TSC-ISA-R的最高占据分子轨道(HOMO)中的电子分布有不同影响。TSC-ISA-R的最低未占据分子轨道(LUMO)-HOMO能隙几乎与它们的实验抑制效力趋势一致。