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I 型 RuBP 羧化酶的疏水不同群体的分离及其动力学特征。

Isolation and kinetic characterisation of hydrophobically distinct populations of form I Rubisco.

机构信息

Institute of Chemical Biology, Department of Chemistry, Imperial College, Flowers Building, South Kensington Campus, Exhibition Road, London SW7 2AZ, UK.

Department of Chemistry, Imperial College, South Kensington Campus, Exhibition Road, London SW7 2AZ, UK.

出版信息

Plant Methods. 2014 Jun 12;10:17. doi: 10.1186/1746-4811-10-17. eCollection 2014.

Abstract

BACKGROUND

Rubisco (Ribulose-1,5-bisphosphate carboxylase/oxygenase) is a Calvin Cycle enzyme involved in CO2 assimilation. It is thought to be a major cause of photosynthetic inefficiency, suffering from both a slow catalytic rate and lack of specificity due to a competing reaction with oxygen. Revealing and understanding the engineering rules that dictate Rubisco's activity could have a significant impact on photosynthetic efficiency and crop yield.

RESULTS

This paper describes the purification and characterisation of a number of hydrophobically distinct populations of Rubisco from both Spinacia oleracea and Brassica oleracea extracts. The populations were obtained using a novel and rapid purification protocol that employs hydrophobic interaction chromatography (HIC) as a form I Rubisco enrichment procedure, resulting in distinct Rubisco populations of expected enzymatic activities, high purities and integrity.

CONCLUSIONS

We demonstrate here that HIC can be employed to isolate form I Rubisco with purities and activities comparable to those obtained via ion exchange chromatography (IEC). Interestingly, and in contrast to other published purification methods, HIC resulted in the isolation of a number of hydrophobically distinct Rubisco populations. Our findings reveal a so far unaccounted diversity in the hydrophobic properties within form 1 Rubisco. By employing HIC to isolate and characterise Spinacia oleracea and Brassica oleracea, we show that the presence of these distinct Rubisco populations is not species specific, and we report for the first time the kinetic properties of Rubisco from Brassica oleracea extracts. These observations may aid future studies concerning Rubisco's structural and functional properties.

摘要

背景

Rubisco(核酮糖-1,5-二磷酸羧化酶/加氧酶)是一种参与 CO2 同化的卡尔文循环酶。它被认为是光合作用效率低下的主要原因,由于与氧气的竞争反应,Rubisco 的催化速率缓慢且缺乏特异性。揭示和理解决定 Rubisco 活性的工程规则可能会对光合作用效率和作物产量产生重大影响。

结果

本文描述了从菠菜和甘蓝中提取的几种疏水性不同的 Rubisco 群体的纯化和特性。这些群体是使用一种新颖且快速的纯化方案获得的,该方案使用疏水性相互作用色谱(HIC)作为形式 I Rubisco 富集程序,从而得到具有预期酶活性、高纯度和完整性的不同 Rubisco 群体。

结论

我们在此证明 HIC 可用于分离具有与离子交换色谱(IEC)获得的纯度和活性相当的形式 I Rubisco。有趣的是,与其他已发表的纯化方法相反,HIC 导致分离出许多疏水性不同的 Rubisco 群体。我们的研究结果揭示了形式 1 Rubisco 中疏水性的多样性,这是迄今为止尚未考虑的。通过使用 HIC 分离和表征菠菜和甘蓝,我们表明这些不同 Rubisco 群体的存在不是物种特异性的,并且我们首次报告了甘蓝提取物中 Rubisco 的动力学特性。这些观察结果可能有助于未来有关 Rubisco 结构和功能特性的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b5a/4076768/9b2f4828327b/1746-4811-10-17-1.jpg

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