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钕离子对菠菜1,5-二磷酸核酮糖羧化酶/加氧酶羧化活性的影响。

Effect of Nd3+ ion on carboxylation activity of ribulose-1,5-bisphosphate carboxylase/oxygenase of spinach.

作者信息

Liu Chao, Hong Fa-shui, Wu Kang, Ma Hong-bing, Zhang Xue-guang, Hong Cheng-jiao, Wu Cheng, Gao Feng-qing, Yang Fan, Zheng Lei, Wang Xue-feng, Liu Tao, Xie Ya-ning, Xu Jian-hua, Li Zhong-rui

机构信息

College of Life Sciences, Soochow University, Suzhou 215123, PR China.

出版信息

Biochem Biophys Res Commun. 2006 Mar 31;342(1):36-43. doi: 10.1016/j.bbrc.2006.01.105. Epub 2006 Feb 2.

Abstract

Neodymium (Nd), as a member of rare earth elements, proved to enhance the photosynthesis rate and organic substance accumulation of spinach through the increase in carboxylation activity of Rubisco. Although the oxygenase activity of spinach Rubisco was slightly changed with the Nd(3+) treatment, the specific factor of Rubisco was greatly increased. It was partially due to the promotion of Rubisco activase (R-A) activity but mainly to the formation of Rubisco-Rubisco activase super-complex, a heavier molecular mass protein (about 1200kD) comprising both Rubisco and Rubisco activase. This super-complex was found during the extraction procedure of Rubisco by the gel electrophoresis and Western-blot studies. The formation of Rubisco-R-A super-complex suggested that the secondary structure of the protein purified from the Nd(3+)-treated spinach was different from that of the control. Extended X-ray absorption fine structure study of the 'Rubisco' purified from the Nd(3+)-treated spinach revealed that Nd was bound with four oxygen atoms and two sulfur atoms of amino acid residues at the Nd-O and Nd-S bond lengths of 2.46 and 2.89A, respectively.

摘要

钕(Nd)作为稀土元素的一员,已被证明可通过提高核酮糖-1,5-二磷酸羧化酶(Rubisco)的羧化活性来提高菠菜的光合速率和有机物质积累。尽管菠菜Rubisco的加氧酶活性在Nd(3+)处理后略有变化,但Rubisco的比活性大幅提高。部分原因是Rubisco活化酶(R-A)活性的促进,但主要是由于Rubisco-Rubisco活化酶超复合物的形成,这是一种分子量更大的蛋白质(约1200kD),包含Rubisco和Rubisco活化酶。通过凝胶电泳和蛋白质免疫印迹研究在Rubisco的提取过程中发现了这种超复合物。Rubisco-R-A超复合物的形成表明,从Nd(3+)处理的菠菜中纯化的蛋白质的二级结构与对照不同。对从Nd(3+)处理的菠菜中纯化的“Rubisco”进行的扩展X射线吸收精细结构研究表明,Nd与氨基酸残基的四个氧原子和两个硫原子结合,Nd-O键长和Nd-S键长分别为2.46和2.89埃。

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