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重组β-倍半水芹烯合酶的纯化及生化特性分析

Purification and biochemical characterization of recombinant  -sesquiphellandrene synthase.

作者信息

Ker De-Sheng, Pang Sze Lei, Othman Noor Farhan, Kumaran Sekar, Tan Ee Fun, Krishnan Thiba, Chan Kok Gan, Othman Roohaida, Hassan Maizom, Ng Chyan Leong

机构信息

Institute of Systems Biology, Universiti Kebangsaan Malaysia , Bangi , Selangor , Malaysia.

Division of Genetics and Molecular Biology, Institute of Biological Sciences, Faculty of Science, University of Malaya , Kuala Lumpur , Malaysia.

出版信息

PeerJ. 2017 Feb 28;5:e2961. doi: 10.7717/peerj.2961. eCollection 2017.

Abstract

BACKGROUND

Sesquiterpenes are 15-carbon terpenes synthesized by sesquiterpene synthases using farnesyl diphosphate (FPP) as a substrate. Recently, a sesquiterpene synthase gene that encodes a 65 kDa protein was isolated from the aromatic plant . Here, we report the expression, purification and characterization of recombinant sesquiterpene synthase protein (PmSTS). Insights into the catalytic active site were further provided by structural analysis guided by multiple sequence alignment.

METHODS

The enzyme was purified in two steps using affinity and size exclusion chromatography. Enzyme assays were performed using the malachite green assay and enzymatic product was identified using gas chromatography-mass spectrometry (GC-MS) analysis. Sequence analysis of PmSTS was performed using multiple sequence alignment (MSA) against plant sesquiterpene synthase sequences. The homology model of PmSTS was generated using I-TASSER server.

RESULTS

Our findings suggest that the recombinant PmSTS is mainly expressed as inclusion bodies and soluble aggregate in the protein expression system. However, the addition of 15% (v/v) glycerol to the protein purification buffer and the removal of N-terminal 24 amino acids of PmSTS helped to produce homogenous recombinant protein. Enzyme assay showed that recombinant PmSTS is active and specific to the C substrate FPP. The optimal temperature and pH for the recombinant PmSTS are 30 °C and pH 8.0, respectively. The GC-MS analysis further showed that PmSTS produces -sesquiphellandrene as a major product and -farnesene as a minor product. MSA analysis revealed that PmSTS adopts a modified conserved metal binding motif (NSE/DTE motif). Structural analysis suggests that PmSTS may binds to its substrate similarly to other plant sesquiterpene synthases.

DISCUSSION

The study has revealed that homogenous PmSTS protein can be obtained with the addition of glycerol in the protein buffer. The N-terminal truncation dramatically improved the homogeneity of PmSTS during protein purification, suggesting that the disordered N-terminal region may have caused the formation of soluble aggregate. We further show that the removal of the N-terminus disordered region of PmSTS does not affect the product specificity. The optimal temperature, optimal pH, and values of PmSTS suggests that PmSTS shares similar enzyme characteristics with other plant sesquiterpene synthases. The discovery of an altered conserved metal binding motif in PmSTS through MSA analysis shows that the NSE/DTE motif commonly found in terpene synthases is able to accommodate certain level of plasticity to accept variant amino acids. Finally, the homology structure of PmSTS that allows good fitting of substrate analog into the catalytic active site suggests that PmSTS may adopt a sesquiterpene biosynthesis mechanism similar to other plant sesquiterpene synthases.

摘要

背景

倍半萜是由倍半萜合酶以法尼基二磷酸(FPP)为底物合成的15碳萜类化合物。最近,从芳香植物中分离出一个编码65 kDa蛋白的倍半萜合酶基因。在此,我们报告重组倍半萜合酶蛋白(PmSTS)的表达、纯化及特性。通过多序列比对指导的结构分析,进一步深入了解了催化活性位点。

方法

使用亲和色谱和尺寸排阻色谱分两步纯化该酶。采用孔雀石绿法进行酶活性测定,并使用气相色谱 - 质谱联用(GC - MS)分析鉴定酶促产物。利用多序列比对(MSA)对植物倍半萜合酶序列进行PmSTS的序列分析。使用I - TASSER服务器生成PmSTS的同源模型。

结果

我们的研究结果表明,重组PmSTS在蛋白质表达系统中主要以包涵体和可溶性聚集体形式表达。然而,在蛋白质纯化缓冲液中添加15%(v/v)甘油以及去除PmSTS的N端24个氨基酸有助于产生均一的重组蛋白。酶活性测定表明重组PmSTS具有活性且对C底物FPP具有特异性。重组PmSTS的最适温度和pH分别为30°C和pH 8.0。GC - MS分析进一步表明,PmSTS主要产生β - 倍半水芹烯,少量产生α - 法呢烯。MSA分析显示PmSTS采用了一种修饰的保守金属结合基序(NSE/DTE基序)。结构分析表明,PmSTS与其他植物倍半萜合酶可能以类似方式结合其底物。

讨论

该研究表明,在蛋白质缓冲液中添加甘油可获得均一的PmSTS蛋白。N端截短显著提高了PmSTS在蛋白质纯化过程中的均一性,表明无序的N端区域可能导致了可溶性聚集体的形成。我们进一步表明,去除PmSTS的N端无序区域不影响产物特异性。PmSTS的最适温度、最适pH和 值表明,PmSTS与其他植物倍半萜合酶具有相似的酶特性。通过MSA分析在PmSTS中发现改变的保守金属结合基序表明,萜合酶中常见的NSE/DTE基序能够适应一定程度的可塑性以接受变异氨基酸。最后,PmSTS的同源结构允许底物类似物很好地拟合到催化活性位点,这表明PmSTS可能采用与其他植物倍半萜合酶类似的倍半萜生物合成机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea70/5333544/a82e80cc0474/peerj-05-2961-g001.jpg

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