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Biochemical properties of the products of cytochrome P450 genes (PDA) encoding pisatin demethylase activity in Nectria haematococca

机译:血红球菌中细胞色素P450素(pisatin脱甲基酶)活性的细胞色素P450基因(PDA)产物的生化特性

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Pea plants produce the antibiotic (+)pisatin in response to infection by the fungus Nectria haematococca, which can detoxify pisatin utilizing a cytochrome P450 monooxygenase called pisatin demethylase. Genes (PDA) have been identified that encode different whole-cell Pda phenotypes that can be distinguished by the length of the lag period and the resulting amount of enzyme activity produced: Pda(SH) = short lag, high activity; Pda(SM) = short lag, moderate activity; and Pda(LL) = long lag, low activity. Only the PdaSH and Pda(SM) phenotypes have been correlated with pathogenicity on pea. In this study, we utilize heterologous expression of the PDA(LL) gene PDA6-1 in Aspergillus nidulans to compare the biochemical properties of the product of this gene with the products of the PDA(SH) gene PDA1 expressed in N. haematococca. Preliminary measurements were also done on the PDA(SM) gene PDA5 expressed in N. haematococca. The PDA gene products differed somewhat in their substrate specificity and in their sensitivity to a few cytochrome P450 inhibitors. However, the enzymes produced by PDA6-1 and PDA1 both had low apparent K-m values toward (+)pisatin (< 0.25 mu M) and a common high degree of insensitivity to most P450 inhibitors, suggesting similar shared biochemical traits as would be expected of products of a highly homologous gene family. Our results indicate that the different whole-cell phenotypes of N. haematococca are not due to significant differences in the biochemical properties of the gene products and are consistent with recent results that indicate that the phenotypic differences are due to different degrees of expression of the genes. [References: 36]
机译:豌豆植物对真菌Nectria haematococca的感染产生抗生素(+)抑素,后者可以利用称为pisatin脱甲基酶的细胞色素P450单加氧酶对pisatin进行解毒。已经确定了编码不同全细胞Pda表型的基因(PDA),可以通过延迟期的长度和所产生的酶活性的产生量来区分:Pda(SH)=短时滞,高活性; Pda(SM)=短暂滞后,中等活动度;和Pda(LL)=滞后,低活性。仅PdaSH和Pda(SM)表型与豌豆的致病性相关。在这项研究中,我们利用构巢曲霉中PDA(LL)基因PDA6-1的异源表达来比较该基因产物与在猪链球菌中表达的PDA(SH)基因PDA1产物的生化特性。还对血球菌中表达的PDA(SM)基因PDA5进行了初步测量。 PDA基因产物在底物特异性和对几种细胞色素P450抑制剂的敏感性方面有所不同。然而,由PDA6-1和PDA1产生的酶对(+)角蛋白(<0.25μM)的表观Km值均较低,并且对大多数P450抑制剂普遍具有高度的不敏感性,这表明与预期的相似的共同生化特性高度同源基因家族的产物。我们的结果表明,N。haematococca的不同全细胞表型不是由于基因产物的生化特性上的显着差异,并且与最近的结果一致,后者表明表型上的差异是由于基因表达程度的不同。 [参考:36]

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