首页> 外文期刊>Biochimica et biophysica acta. Gene structure and expression >Functional expression of a mammalian acetylcholinesterase in Pichia pastoris: comparison to acetylcholinesterase, expressed and reconstituted from Escherichia coli
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Functional expression of a mammalian acetylcholinesterase in Pichia pastoris: comparison to acetylcholinesterase, expressed and reconstituted from Escherichia coli

机译:哺乳动物乙酰胆碱酯酶在巴斯德毕赤酵母中的功能表达:与乙酰胆碱酯酶的表达和重组(从大肠杆菌中重组)

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The mature rat brain acetylcholinesterase gene (T subunit, AChE) was subcloned downstream of the temperature-inducible λ promoter P_L and fused to the signal peptide of the OmpA protein. Three different expression vectors were constructed: (i) pCompmA containing the mature AChE, (ii) pCompΔTA containing a truncated AChE and (iii) pCompΔTAH containing the truncated AChE C-terminal fused to a 6xHis-tag. With all expression vectors the overexpression of AChE in Escherichia coli resulted mainly in cytoplasmic inclusion bodies (IB). However, some activity was found in the periplasmic space. The inclusion bodies were refolded in vitro, yielding up to 1.42 U/mg IB of active AChE. the refolded AChE was partially purified (approx. 300-fold) by affinity chromatography with a specific activity of approx. 250 U/mg. Removing the cysteine residue near the C-terminus (truncated AChE, ΔTAChE) assuming to affect the refolding, did not increase the amount of active enzyme obtained after refolding. Purification of denatured ΔTAChE-6xHis prior to refolding by Ni-NTA-chromatography increased the refolding efficiency by a factor of 1.5. Functional expression and secretion of rat brain acetylcholinesterase into the medium was achieved in Pichia pastoris. By optimizing the culture conditions, 100 mU/ml AChE in the medium was produced. In this work we are describing the functional expression of a mammalian AChE in a microbial host in good yields for the first time. The physico-chemical properties of both, the bacterial and yeast expressed AChE were compared with those of the native AChE. The properties of the yeast expressed AChE and the native AChE were similar, whereas the E. coli expressed enzyme was found to be less stable and had different inhibition properties.
机译:成熟的大鼠脑乙酰胆碱酯酶基因(T亚基,AChE)被亚克隆到温度诱导型λ启动子P_L的下游,并与OmpA蛋白的信号肽融合。构建了三种不同的表达载体:(i)含有成熟AChE的pCompmA,(ii)含有截短的AChE的pCompΔTAH和(iii)含有截短的与6xHis标签融合的AChE C端的pCompΔTAH。对于所有表达载体,AChE在大肠杆菌中的过表达主要导致细胞质包涵体(IB)。但是,在周质空间中发现了一些活性。包涵体在体外重折叠,产生高达1.42 U / mg IB的活性AChE。通过亲和色谱法将重折叠的AChE部分纯化(约300倍),比活度约为3。 250 U /毫克。假定影响重折叠,除去C端附近的半胱氨酸残基(截短的AChE,ΔTAChE),不会增加重折叠后获得的活性酶的量。通过Ni-NTA色谱重折叠之前纯化变性的ΔTAChE-6xHis的重折叠效率提高了1.5倍。在巴斯德毕赤酵母中实现了大鼠脑中乙酰胆碱酯酶的功能性表达和分泌。通过优化培养条件,在培养基中产生了100 mU / ml的AChE。在这项工作中,我们第一次描述了哺乳动物AChE在微生物宿主中以高产量的功能表达。将细菌和酵母表达的AChE的理化性质与天然AChE的理化性质进行了比较。酵母表达的AChE和天然AChE的特性相似,而大肠杆菌表达的酶不稳定,并且具有不同的抑制特性。

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