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Molecular Characterization of a Thermostable Cyanophycin Synthetase from the Thermophilic Cyanobacterium Synechococcus sp. Strain MA19 and In Vitro Synthesis of Cyanophycin and Related Polyamides

机译:嗜热蓝细菌Syechococcus sp。的热稳定蓝藻合成酶的分子表征。 MA19菌株和蓝藻素及相关聚酰胺的体外合成

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摘要

The thermophilic cyanobacterium Synechococcus sp. strain MA19 contained the structural genes for cyanophycin synthetase (cphA) and cyanophycinase (cphB), which were identified, cloned, and sequenced in this study. The translation products of cphA and cphB exhibited high levels of similarity to corresponding proteins of other cyanobacteria, such as Anabaena variabilis and Synechocystis sp. Recombinant cells of Escherichia coli harboring cphA colinear with lacPO accumulated cyanophycin that accounted for up to 25% (wt/wt) of the dry cell matter in the presence of isopropyl-β-d-thiogalactopyranoside (IPTG). The cyanophycin synthetase was enriched 123-fold to electrophoretic homogeneity from the soluble fraction of the recombinant cells by anion-exchange chromatography, affinity chromatography, and gel filtration chromatography. The purified cyanophycin synthetase maintained the parental thermophilic character and was active even after prolonged incubation at 50°C; in the presence of ectoine the enzyme retained 90% of its activity even after 2 h of incubation. The in vitro activity of the enzyme depended on ATP, primers, and both substrates, l-arginine and l-aspartic acid. In addition to native cyanophycin, the purified enzyme accepted a modified cyanophycin containing less arginine, α-arginyl aspartic acid dipeptide, and poly-α,β-dl-aspartic acid as primers and also incorporated β-hydroxyaspartic acid instead of l-aspartic acid or l-canavanine instead of l-arginine at a significant rate. The lack of specificity of this thermostable enzyme with respect to primers and substrates, the thermal stability of the enzyme, and the finding that the enzyme is suitable for in vitro production of cyanophycin make it an interesting candidate for biotechnological processes.
机译:嗜热蓝细菌Synechococcus sp.。 MA19菌株包含蓝藻素合成酶(cphA)和蓝藻素酶(cphB)的结构基因,在本研究中已对其进行了鉴定,克隆和测序。 cphA和cphB的翻译产物与其他蓝藻的相应蛋白(如Anabaena variabilis和Synechocystis sp)表现出很高的相似性。带有与lacPO共线性的cphA的大肠杆菌重组细胞积累了氰霉素,在异丙基-β-d-硫代半乳糖吡喃糖苷(IPTG)存在下,氰基占干细胞物质的25%(wt / wt)。通过阴离子交换色谱,亲和色谱和凝胶过滤色谱,从重组细胞的可溶级分中将氰基合成酶富集至123倍,以实现电泳均一性。纯化的蓝霉素合成酶即使在50°C长时间孵育后仍具有亲热特性,并具有活性。即使存在2小时的温育,该酶仍可保留90%的活性。该酶的体外活性取决于ATP,引物以及两种底物L-精氨酸和L-天冬氨酸。除天然花青素外,纯化的酶还接受含有较少精氨酸,α-精氨酰天冬氨酸二肽和聚-α,β-dl-天冬氨酸的修饰花青素作为引物,并且还掺入了β-羟基天冬氨酸而不是1-天冬氨酸或以l-canavanine取代l-精氨酸的比率很高。这种热稳定酶相对于引物和底物缺乏特异性,该酶的热稳定性以及该酶适用于蓝霉素的体外生产的发现,使其成为生物技术过程中令人感兴趣的候选者。

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