Guo Shaofen, Cao Rui, Lu Aihua, Zhou Qing, Lu Tianhong, Ding Xiaolan, Li Chaojun, Huang Xiaohua
Jiangsu Key Laboratory of Biofunctional Materials, College of Chemistry and Environmental Science, Nanjing Normal University, Nanjing 210097, People's Republic of China.
J Biol Inorg Chem. 2008 May;13(4):587-97. doi: 10.1007/s00775-008-0347-x.
One of the possible mechanisms for the inhibition effect of Tb(III) on peroxidase activity in horseradish (Armoracia rusticana) treated with Tb(III) was investigated using some biophysical and biochemical methods. Firstly, it was found that a large amount of Tb(III) can be distributed on the cell wall, that some Tb(III) can enter into the horseradish cell, indicating that peroxidase was mainly distributed on cell wall, and thus that Tb(III) would interact with horseradish peroxidase (HRP) in the plant. In addition, peroxidase bioactivity was decreased in the presence of Tb(III). Secondly, a new peroxidase-containing Tb(III) complex (Tb-HRP) was obtained from horseradish after treatment with Tb(III); the molecular mass of Tb-HRP is near 44 kDa and the pI is about 8.80. Thirdly, the electrocatalytic activity of Tb-HRP is much lower than that of HRP obtained from horseradish without treatment with Tb(III). The decrease in the activity of Tb-HRP is due to the destruction (unfolding) of the conformation in Tb-HRP. The planarity of the heme active center in the Tb-HRP molecule was increased and the extent of exposure of Fe(III) in heme was decreased, leading to inhibition of the electron transfer. The microstructure change in Tb-HRP might be the result of the inhibition effect of Tb(III) on peroxidase activity in horseradish.
采用一些生物物理和生化方法,研究了铽(III)对用铽(III)处理过的辣根(Armoracia rusticana)中过氧化物酶活性的抑制作用的一种可能机制。首先,发现大量铽(III)可分布在细胞壁上,部分铽(III)可进入辣根细胞,这表明过氧化物酶主要分布在细胞壁上,因此铽(III)会与植物中的辣根过氧化物酶(HRP)相互作用。此外,在铽(III)存在的情况下,过氧化物酶的生物活性降低。其次,用铽(III)处理辣根后,从中获得了一种新的含铽(III)的过氧化物酶复合物(Tb-HRP);Tb-HRP的分子量接近44 kDa,pI约为8.80。第三,Tb-HRP的电催化活性远低于未用铽(III)处理的辣根中获得的HRP。Tb-HRP活性的降低是由于Tb-HRP构象的破坏(展开)。Tb-HRP分子中血红素活性中心的平面度增加,血红素中Fe(III)的暴露程度降低,导致电子转移受到抑制。Tb-HRP的微观结构变化可能是铽(III)对辣根中过氧化物酶活性抑制作用的结果。