Huang Xiao-Hong, Chen Qing-Xi, You Min-Sheng, Wang Qin, Song Kang-Kang, Wang Jun, Sha Li, Guan Xiong
Key Laboratory of Biopesticide and Chemical Biology, Fujian Agriculture and Forestry University, Ministry of Education, Fuzhou 350002, PR China.
J Enzyme Inhib Med Chem. 2006 Aug;21(4):413-8. doi: 10.1080/14756360500094193.
The effects of fluorobenzaldehydes (2-,3- and 4-fluorobenzaldehyde) on the activity of mushroom tyrosinase have been studied. The results show that fluorobenzaldehydes can strongly inhibit both monophenolase activity and diphenolase activity of the enzyme and the inhibition is reversible. The IC50 values were estimated as 1.62 mM, 1.06 mM and 0.16 mM for diphenolase activity and as 1.35 mM, 1.18 mM and 1.05 mM for monophenolase activity, respectively. The lag time of the monophenolase was obviously lengthened by these three fluorobenzaldehydes. When the concentration of inhibitors reached 2.0 mM, the lag time was lengthened from 33 s to 142 s, 168 s and 190 s, respectively. Kinetic analyses show that the inhibition mechanism of 2-fluorobenzaldehyde on the diphenolase was competitive inhibition of the diphenolase activity, and that of 3-fluorobenzaldehyde and 4-fluorobenzaldehyde were of a mixed-type. The inhibition constants for these three fluorobenzaldehydes on the diphenolase were determined and compared.
研究了氟苯甲醛(2-氟苯甲醛、3-氟苯甲醛和4-氟苯甲醛)对蘑菇酪氨酸酶活性的影响。结果表明,氟苯甲醛能强烈抑制该酶的单酚酶活性和双酚酶活性,且这种抑制作用是可逆的。双酚酶活性的IC50值分别估计为1.62 mM、1.06 mM和0.16 mM,单酚酶活性的IC50值分别为1.35 mM、1.18 mM和1.05 mM。这三种氟苯甲醛明显延长了单酚酶的滞后时间。当抑制剂浓度达到2.0 mM时,滞后时间分别从33秒延长至142秒、168秒和190秒。动力学分析表明,2-氟苯甲醛对双酚酶的抑制机制是对双酚酶活性的竞争性抑制,而3-氟苯甲醛和4-氟苯甲醛的抑制机制是混合型的。测定并比较了这三种氟苯甲醛对双酚酶的抑制常数。