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首页> 外文期刊>Applied and Environmental Microbiology >Homologous expression of recombinant manganese peroxidase in Phanerochaete chrysosporium.
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Homologous expression of recombinant manganese peroxidase in Phanerochaete chrysosporium.

机译:重组锰过氧化物酶在Phanerochaete chrysosporium中的同源表达。

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The promoter region of the glyceraldehyde-3-phosphate dehydrogenase gene (gpd) was used to drive expression of mnp1, the gene encoding Mn peroxidase isozyme 1, in primary metabolic cultures of Phanerochaete chrysosporium. A 1,100-bp fragment of the P. chrysosporium gpd promoter region was fused upstream of the mnp1 gene to construct plasmid pAGM1, which contained the Schizophyllum commune ade5 gene as a selectable marker. pAGM1 was used to transform a P. chrysosporium ade1 auxotroph to prototrophy. Ade+ transformants were screened for peroxidase activity on a solid medium containing high carbon and high nitrogen (2% glucose and 24 mM NH4 tartrate) and o-anisidine as the peroxidase substrate. Several transformants that expressed high peroxidase activities were purified and analyzed further in liquid cultures. Recombinant Mn peroxidase (rMnP) was expressed and secreted by transformant cultures on day 2 under primary metabolic growth conditions (high carbon and high nitrogen), whereas endogenous wild-type mnp genes were not expressed under these conditions. Expression of rMnP was not influenced by the level of Mn in the culture medium, as previously observed for the wild-type Mn peroxidase (wtMnP). The amount of active rMnP expressed and secreted in this system was comparable to the amount of enzyme expressed by the wild-type strain under ligninolytic conditions. rMnP was purified to homogeneity by using DEAE-Sepharose chromatography, Blue Agarose chromatography, and Mono Q column chromatography. The M(r) and absorption spectrum of rMnP were essentially identical to the M(r) and absorption spectrum of wtMnP, indicating that heme insertion, folding, and secretion were normal.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:在Phanerochaete chrysosporium的初级代谢培养物中,使用了甘油醛-3-磷酸脱氢酶基因(gpd)的启动子区域来驱动mnp1的表达,mnp1是编码Mn过氧化物酶同工酶1的基因。将金黄色葡萄球菌gpd启动子区域的1100bp片段在mnp1基因上游融合,以构建质粒pAGM1,该质粒含有Schizophyllum comeune ade5基因作为选择标记。 pAGM1用于将金孢假单胞菌ade1营养缺陷型转化为原养型。在含有高碳和高氮(2%葡萄糖和24 mM酒石酸NH4)和邻氨基苯甲醚作为过氧化物酶底物的固体培养基上筛选Ade +转化子的过氧化物酶活性。纯化了几种具有高过氧化物酶活性的转化体,并在液体培养物中进一步进行了分析。重组Mn过氧化物酶(rMnP)在第2天在主要代谢生长条件下(高碳和高氮)通过转化培养物表达和分泌,而在这些条件下不表达内源性野生型mnp基因。如先前针对野生型Mn过氧化物酶(wtMnP)所观察到的,rMnP的表达不受培养基中Mn水平的影响。在该系统中表达和分泌的活性rMnP的数量与在木质素分解条件下野生型菌株表达的酶的数量相当。通过使用DEAE-Sepharose色谱,Blue Agarose色谱和Mono Q柱色谱将rMnP纯化至均质。 rMnP的M(r)和吸收光谱与wtMnP的M(r)和吸收光谱基本相同,表明血红素的插入,折叠和分泌是正常的。(摘要截断为250个字)

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