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首页> 外文期刊>Phytochemistry >Isolation and bioinformatic analysis of seven genes encoding potato apyrase. Bacterial overexpresssion, refolding and initial kinetic studies on some recombinant potato apyrases
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Isolation and bioinformatic analysis of seven genes encoding potato apyrase. Bacterial overexpresssion, refolding and initial kinetic studies on some recombinant potato apyrases

机译:编码马铃薯腺苷三磷酸酶的七个基因的分离和生物信息学分析。某些重组马铃薯断面细菌的过表达,重折叠和初步动力学研究

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Here we have isolated seven apyrase encoding cDNA sequences (StAPY4-StAPY10) from the potato variety Saturna tuber cDNA library by affecting necessary modifications in the screening protocol. The cDNA sequences were identified with a pair of primers complementary to the most conserved sequences identified in potato variety Desiree apyrase genes. Our data strongly suggest the multigenic nature of potato apyrase. All deduced amino acid sequences contain a putative signal sequence, one transmembrane region at the amino terminus and five apyrase conserved regions (ACRs) (except StAPY6). Phylogenetic analysis revealed that encoded proteins shared high level of DNA sequence identity among themselves, representing a family of proteins markedly distinct from other eukaryotic as well as prokaryotic apyrases. Two cDNA sequences (StAPY4 and StAPY6) were overexpressed in bacteria and recombinant proteins were found accumulated in inclusion bodies, even thought they were fused with thioredoxin-tag. Additionally, we present the first successful in vitro attempt at reactivation and purification of recombinant potato apyrase StAPY6. The ratio of ATPase/ADPase hydrolysis of recombinant StAPY6 was determined as 1.5:1. Unlike other apyrases the enzyme lacked ACR5 and was endowed with lower molecular weight, high specificity for purine nucleotides and very low specificity for pyrimidine, suggesting that StAPY6 is a potato apyrase, not described so far
机译:在这里,我们通过影响筛选方案中的必要修饰,从马铃薯品种Saturna tuber cDNA库中分离出七个编码腺苷三磷酸酶的cDNA序列(StAPY4-StAPY10)。用一对与马铃薯品种Desiree腺苷三磷酸腺苷三磷酸酶基因中鉴定的最保守序列互补的引物对鉴定cDNA序列。我们的数据有力地表明了马铃薯腺苷三磷酸酶的多基因性质。所有推导的氨基酸序列均包含一个推定的信号序列,一个位于氨基末端的跨膜区和五个腺苷三磷酸酶保守区(ACR)(StAPY6除外)。系统发育分析表明,编码的蛋白质彼此之间具有较高的DNA序列同一性,代表着一个明显不同于其他真核和原核无性腺的蛋白质家族。在细菌中过表达了两个cDNA序列(StAPY4和StAPY6),发现重组蛋白积聚在包涵体中,甚至认为它们与硫氧还蛋白标签融合了。此外,我们提出了重组马铃薯腺苷三磷酸腺苷二磷酸酶StAPY6的首次成功的体外尝试。重组StAPY6的ATPase / ADPase水解比例确定为1.5:1。与其他无主链淀粉不同,该酶缺少ACR5,具有较低的分子量,对嘌呤核苷酸的高特异性和对嘧啶的低特异性,这表明StAPY6是一种马铃薯无核糖核酸,至今尚未描述。

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