Li Sen, Lu Wei, Li Guo-Fu, Gong Yan-Dao, Zhao Nan-Ming, Zhang Rong-Xian, Zhou Hai-Meng
Department of Biological Science and Biotechnology, Tsinghua University, Beijing 100084, PR China.
Biochemistry (Mosc). 2004 Oct;69(10):1136-42. doi: 10.1023/b:biry.0000046888.45252.67.
The properties of rice-derived ribulose-1,5-bisphosphate carboxylase/oxygenase (rubisco) in different concentrations of hydrogen peroxide (H2O2) solutions have been studied. The results indicate that at low H2O2 concentrations (0.2-10 mM), the properties of rubisco (e.g., carboxylase activities, structure, and susceptibility to heat denaturation) change slightly. However, at higher H2O2 concentrations (10-200 mM), rubisco undergoes an unfolding process, including the loss of secondary and tertiary structure, forming extended hydrophobic interface, and leading to cross-links between large subunits. High concentrations of H2O2 can also result in an increase in susceptibility of rubisco to heat denaturation. Further pre-treatments with or without reductive reagents to rubisco show that the disulfide bonds in rubisco help to protect the enzyme from damage by H2O2 as well as other reactive oxygen species.
研究了不同浓度过氧化氢(H₂O₂)溶液中水稻来源的1,5-二磷酸核酮糖羧化酶/加氧酶(rubisco)的性质。结果表明,在低H₂O₂浓度(0.2 - 10 mM)下,rubisco的性质(如羧化酶活性、结构和对热变性的敏感性)变化轻微。然而,在较高H₂O₂浓度(10 - 200 mM)下,rubisco经历一个去折叠过程,包括二级和三级结构的丧失,形成伸展的疏水界面,并导致大亚基之间的交联。高浓度的H₂O₂还会导致rubisco对热变性的敏感性增加。对rubisco进行有无还原试剂的进一步预处理表明,rubisco中的二硫键有助于保护该酶免受H₂O₂以及其他活性氧的损伤。