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Oxalate decarboxylase of the white-rot fungus Dichomitus squalens demonstrates a novel enzyme primary structure and non-induced expression on wood and in liquid cultures

机译:白腐真菌嗜铬菌标志板的草酸脱羧酶证明了一种新型酶机初级结构和在木材和液体培养上的非诱导表达

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Oxalate decarboxylase (ODC) catalyses the conversion of oxalic acid to formic acid and CO2 in bacteria and fungi. In wood-decaying fungi the enzyme has been linked to the regulation of intra- and extracellular quantities of oxalic acid, which is one of the key components in biological decomposition of wood. ODC enzymes are biotechnologically interesting for their potential in diagnostics, agriculture and environmental applications, e.g. removal of oxalic acid from industrial wastewaters. We identified a novel ODC in mycelial extracts of two wild-type isolates of Dichomitus squalens, and cloned the corresponding Ds-odc gene. The primary structure of the Ds-ODC protein contains two conserved Mn-binding cupin motifs, but at the N-terminus, a unique, approximately 60?aa alanine-serine-rich region is found. Real-time quantitative RT-PCR analysis confirmed gene expression when the fungus was cultivated on wood and in liquid medium. However, addition of oxalic acid in liquid cultures caused no increase in transcript amounts, thereby indicating a constitutive rather than inducible expression of Ds-odc. The detected stimulation of ODC activity by oxalic acid is more likely due to enzyme activation than to transcriptional upregulation of the Ds-odc gene. Our results support involvement of ODC in primary rather than secondary metabolism in fungi.
机译:草酸脱羧酶(ODC)催化草酸对甲酸和CO 2的甲酸和真菌的转化。在木材腐烂的真菌中,酶已被视为对和细胞外量的草酸的调节,这是木材的生物分解中的关键成分之一。 ODC酶在诊断,农业和环境应用中的潜力是生物技术上有趣的,例如,从工业废水中除去草酸。我们在两种野生型分支的两种野生型分离株的菌丝菌菌丝提取物中鉴定了一种新的ODC,并克隆了相应的DS-ODC基因。 DS-ODC蛋白的主要结构含有两个保守的MN结合蛋白基序,但在N-末端,是一个唯一的约60?AA丙氨酸 - 富含富含的区域。当真菌在木材和液体介质中培养时,实时定量RT-PCR分析证实了基因表达。然而,在液体培养物中加入草酸不会增加转录量,从而指示组成型而不是DS-ODC的诱导型表达。由于酶活化而言,通过草酸检测到ODC活性的刺激更可能是DS-ODC基因的转录上调。我们的结果支持参与ODC在初级而不是真菌中的次生新陈代谢。

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