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首页> 外文期刊>Biological trace element research >Effect of Mg2+ on the structure and function of ribulose-1,5-bisphosphate carboxylase/oxygenase.
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Effect of Mg2+ on the structure and function of ribulose-1,5-bisphosphate carboxylase/oxygenase.

机译:Mg2 +对-1,5-双磷酸核糖羧化酶/加氧酶的结构和功能的影响。

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Mg(2+) in various concentrations was added to purified Rubisco in vitro to gain insight into the mechanism of molecular interactions between Mg(2+) and Rubisco. The enzyme activity assays showed that the reaction between Rubisco and Mg(2+) was two order, which means that the enhancement of Rubisco activity was accelerated by low concentration of Mg(2+) and slowed by high concentration of Mg(2+). The kinetics constant (K (m)) and V (max) was 1.91 microM and 1.13 micromol CO(2) mg(-1) protein.min(-1), respectively, at a low concentration of Mg(2+), and 3.45 microM and 0.32 micromol CO(2)mg(-1) protein.min(-1), respectively, at a high concentration of Mg(2+). By UV absorption and fluorescence spectroscopy assays, the Mg(2+) was determined to be directly bound to Rubisco; the binding site of Mg(2+) to Rubisco was 0.275, the binding constants (K (A)) of the binding site were 6.33 x 10(4) and 5.5 x 10(4) l.mol(-1). Based on the analysis of the circular dichroism (CD) spectra, it was concluded that the binding of Mg(2+) did not alter the secondary structure of Rubisco, suggesting that the observed enhancement of Rubisco carboxylase activity was caused by a subtle structural change in the active site through the formation of the complex with Mg(2+).
机译:将各种浓度的Mg(2+)加入体外纯化的Rubisco中,以深入了解Mg(2+)与Rubisco之间的分子相互作用机理。酶活性测定表明Rubisco和Mg(2+)之间的反应是两个反应,这意味着低浓度的Mg(2+)促进Rubisco活性的增强,而高浓度的Mg(2+)则减慢Rubisco活性的增强。 。在低浓度的Mg(2+)下,动力学常数(K(m))和V(max)分别为1.91 microM和1.13 micromol CO(2)mg(-1)protein.min(-1),和3.45 microM和0.32 micromol CO(2)mg(-1)protein.min(-1),分别在高浓度的Mg(2+)下。通过紫外吸收和荧光光谱测定,Mg(2+)被确定直接与Rubisco结合。 Mg(2+)与Rubisco的结合位点为0.275,结合位点的结合常数(K(A))为6.33 x 10(4)和5.5 x 10(4)l.mol(-1)。根据圆二色性(CD)光谱的分析,得出的结论是Mg(2+)的结合不会改变Rubisco的二级结构,这表明观察到的Rubisco羧化酶活性的增强是由微妙的结构变化引起的通过与Mg(2+)形成复合物而在活性位点中。

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