首页> 外文期刊>World Journal of Microbiology and Biotechnology >Expression in Pichia pastoris X33 of His-tagged lipase from a novel strain of Rhizopus oryzae and its mutant Asn 134 His: purification and characterization
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Expression in Pichia pastoris X33 of His-tagged lipase from a novel strain of Rhizopus oryzae and its mutant Asn 134 His: purification and characterization

机译:一种新型米根霉菌株及其突变体Asn 134 His在His标签脂肪酶中的巴斯德毕赤酵母X33表达:纯化与鉴定

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The sequence corresponding to the mature lipase of Rhizopus oryzae WPG (ROLw) was subcloned in the pPIC9K expression vector, with a strong AOX1 promoter, to construct a recombinant lipase protein containing six histidine residues at the N-terminal. The His-tagged lipase was expressed in Pichia Pastoris X33 and purified to homogeneity by a simple, one-step purification protocol using immobilized metal affinity chromatography (Ni-NTA resin). High level expression of the lipase by Pichia Pastoris X33 cells harbouring the lipase gene containing expression vector was observed upon induction with 2.5 g/l methanol at 28°C; the specific activity of the purified His6-ROLw was 1,500 or 760 U/mg using olive oil emulsion or tributyrin as substrates, respectively. To check the importance of Asn 134 His substitution in the affinity and substrate selectivity of ROLw, the mutant His6-ROLw-N134H was overexpressed in Pichia Pastoris X33 and purified with the same nickel metal affinity column. The specific activity of the purified His-tagged ROLw-N134H was 5,900 and 35 U/mg using olive oil emulsion or tributyrin as substrate. A comparative study of the wild type (His6-ROLw) and the mutant (His6-ROLw-N134H) proteins was carried out. A 3D structure model of ROLw was built using the RNL structure as template. We have concluded that a slight increase in the exposed hydrophilic residues on the surface of ROLw as compared to RNL (ROLwN134H) could be responsible for a higher selectivity of ROlw for long and short chain triacylglycerols at the lipid/water interface and then explaining the importance of Asn 134 for the chain length specificity of ROLw. This property is quite rare among Rhizopus lipases and gives this new lipase great potential for use in the field of biocatalysis.
机译:在具有强大的AOX1 启动子的pPIC9K表达载体中亚克隆了米根霉WPG(ROLw)成熟脂肪酶的序列,构建了一个在N末端含有6个组氨酸残基的重组脂肪酶蛋白。带有His标记的脂肪酶在毕赤酵母(Pichia Pastoris X33)中表达,并通过固定化金属亲和色谱法(Ni-NTA树脂)通过简单的一步纯化方案纯化至均一。在28°C用2.5 g / l甲醇诱导后,观察到带有含脂肪酶基因表达载体的巴斯德毕赤酵母X33 细胞高水平表达脂肪酶。以橄榄油乳液或三丁酸甘油酯为底物,纯化的His6 -ROLw的比活分别为1,500或760 U / mg。为了检查Asn 134 His取代对ROLw的亲和力和底物选择性的重要性,突变体His6 -ROLw-N134H在毕赤酵母X33中过表达,并用相同的镍金属亲和柱纯化。使用橄榄油乳液或三丁酸甘油酯作为底物,纯化的带有His标签的ROLw-N134H的比活为5,900和35 U / mg。对野生型(His6 -ROLw)和突变型(His6 -ROLw-N134H)蛋白进行了比较研究。使用RNL结构作为模板,构建了ROLw的3D结构模型。我们得出的结论是,与RNL(ROLwN134H)相比,ROLw表面暴露的亲水残基的轻微增加可能是由于ROlw对脂质/水界面上的长链和短链三酰基甘油具有更高的选择性,因此可以解释其重要性Asn 134对ROLw的链长特异性的影响。该特性在根霉脂肪酶中是非常罕见的,并且赋予了这种新的脂肪酶巨大的潜力,可用于生物催化领域。

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