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首页> 外文期刊>Microbiology >Identification and functional expression of ctaA, a P-type ATPase gene involved in copper trafficking in Trametes versicolor
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Identification and functional expression of ctaA, a P-type ATPase gene involved in copper trafficking in Trametes versicolor

机译:CTAA的鉴定和功能表达,一种参与铜贩运铜葡萄球菌的P型ATP酶基因

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摘要

Here the identification and characterization of a gene encoding a copper-trafficking enzyme, ctaA (copper-transporting ATPase), from the basidiomycete Trametes versicolor are described. This P-type copper ATPase gene has two alleles, differing primarily in the length of the second, unusually long intron, and encodes a 983 aa protein with 40?% sequence identity to yeast Ccc2p. Overexpression of ctaA in yeast grown in the presence of copper led to a 15-fold increase in laccase yields, while overexpression of ctaA and tahA, a previously identified copper homeostasis gene of T. versicolor, was additive, leading to a 20-fold increase in laccase production. In T. versicolor, overexpression of ctaA and tahA led to an eightfold increase in laccase expression, and a cotransformant still expressed laccase at 3000?μM copper when hardly any laccase activity is detected in the wild-type strain. Apparently, at low to moderate levels of copper tahA and ctaA overexpression disturbs the normal hierarchy of copper distribution, resulting in more being directed to the Golgi, while with high copper amounts that normally switch on the copper detoxification processes, tahA and ctaA gene products seem to out-compete the metallothionein copper chaperones, meaning laccase is still supplied with copper. These results may lead to a better understanding of copper trafficking and the hierarchy of copper distribution in the cell, and possibly be useful for constructing laccase-overproducing strains for biotechnological purposes.
机译:这里,描述了编码铜贩运酶,CTAA(铜传输ATP酶)的基因的鉴定和表征来自贱民Themets Versicolor。该P型铜ATP酶基因具有两种等位基因,主要在第二,异常长的内含子的长度下不同,并编码983AA蛋白,对酵母CCC2P具有40μl%的序列同一性。在铜存在下生长的酵母中CTAA的过度表达导致漆酶产率的15倍,而CTAA和塔哈的过度表达,先前鉴定的T. Versicolor的铜稳态基因是添加剂,导致20倍的增加在漆包制作中。在T. Versicolor中,CTAA和塔哈的过度表达导致漆酶表达的八倍增加,并且当在野生型菌株中检测到任何漆酶活性时,仍然在3000℃下表达漆酶的漆酶。显然,在低至中等水平的铜塔哈和CTAA过度表达中,铜分布的正常层次,导致更多地指向高尔基,而具有高铜量,通常接通铜解毒过程,塔哈和CTAA基因产品似乎要超出金属硫蛋白铜伴侣,含有铜的漆酶。这些结果可能导致对细胞中的铜贩运和铜分布层次的更好理解,并且可能用于构建生物技术目的的漆酶过量菌株。

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