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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Biosynthesis, spectral properties and thermostability of cyanobacterial allophycocyanin holo-alpha subunits
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Biosynthesis, spectral properties and thermostability of cyanobacterial allophycocyanin holo-alpha subunits

机译:蓝细菌别藻蓝素全-α亚基的生物合成,光谱性质和热稳定性

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摘要

Allophycocyanin (APC) is generally used as fluorescent labels. In this study, apcA genes from a mesophilic cyanobacterium Synechocystis sp. PCC 6803 and a thermophilic cyanobacterium Thermosynechococcus elongatus BP-1 were cloned into expression vectors to construct pathway for biosynthesis of allophycocyanin holo-alpha subunits (named as holo-ApcAS for Synechocystis sp. PCC 6803 and holo-ApcAT for T. elongatus BP-1) in Escherichia coli. The two holo-ApcAs were successfully reconstituted in E. coli and purified by metal affinity chromatography. Spectral analysis showed that the two proteins have similar spectroscopic properties, with absorbance maximum both at 614 nm and emission maximum at 639 nm for holo-ApcAS and 638 nm for holo-ApcAT. At high temperature, the recombinant holo-ApcAT was much more stable than the recombinant holo-ApcAS. Holo-ApcAS was most fluorescent at pH 8.5 and stable in pH range of 6.0-9.0 while holo-ApcAT was most fluorescent at pH 6.0 and stable in pH range of 5.0-7.0, with residual fluorescence intensity no less than 90% of the maximum fluorescence. These findings will pave the way for further protein engineering to achieve high stable APC from extremophiles. (C) 2016 Elsevier B.V. All rights reserved.
机译:藻蓝蛋白(APC)通常用作荧光标记。在这项研究中,来自嗜温蓝藻Synechocystis sp。的apcA基因。将PCC 6803和嗜热蓝藻嗜热嗜蓝菌BP-1克隆到表达载体中,以构建生物合成藻蓝素全α-α亚基的途径(对于Synechocystis sp。PCC 6803,将其命名为全APCAS;对于长红线菌BP-1,将其全全ApcAT命名。 )。两种完整的ApcA在大肠杆菌中成功重组,并通过金属亲和层析纯化。光谱分析表明这两种蛋白质具有相似的光谱特性,对于holo-ApcAS的最大吸收在614 nm处,在639 nm处的最大发射,对于holo-ApcAT在638 nm处最大。在高温下,重组holo-ApcAT比重组holo-ApcAS稳定得多。 Holo-ApcAS在pH 8.5时最强荧光,在6.0-9.0的pH范围内稳定,而holo-ApcAT在pH 6.0时最强荧光,在5.0-7.0的pH范围内稳定,残留荧光强度不小于最大值的90%。荧光。这些发现将为进一步的蛋白质工程铺平道路,以实现来自极端微生物的高度稳定的APC。 (C)2016 Elsevier B.V.保留所有权利。

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