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Unusual Stability of Anabaena Sensory Rhodopsin Transducer from Anabaena PCC7120

机译:鱼腥藻PCC7120的鱼腥藻视紫红质传感器的异常稳定性。

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摘要

Advances in biotechnology generated wide range of microbial genome and their related protein database. Freshwater cyanobacterium Anabaena PCC7120 sensory rhodopsin, ASR in contrast to classical haloarchaeal sensory rhodopsins interacts with putative soluble transducer, ASRT. The 125 amino acid transducer exists as a soluble protein and is involved in photoreceptor binding. Recombinant DNA tools in biotechnology conventionally support the use of affinity tags for ease of protein purification and subsequent studies. The ASRT exists as a stable tetramer. Both X-ray crystal structure and solution NMR results with ASRT utilizing hexa-histidine affinity tag reveal it as a primarily β-stranded protein We have observed that the affinity tagged ASRT exhibits altered oligomeric stability. In this communication we outlined the effect of commonly used denaturant, Sodium Dodecyl Sulfate (SDS) on the tetrameric packing of ASRT. Our results support that N-terminus hexa-histidine tagged ASRT displayed unusual SDS-resistant structure. The unusual stability of ASRT and its homologues present in other microbial population could provide further insight towards their role in receptor, other ligand binding and signaling.
机译:生物技术的进步产生了广泛的微生物基因组及其相关的蛋白质数据库。淡水蓝藻鱼腥藻PCC7120感觉视紫红质,ASR与经典的卤古细菌感觉视紫红质相反,它与假定的可溶性传感器ASRT相互作用。 125个氨基酸的传感器以可溶性蛋白的形式存在,并参与感光受体的结合。生物技术中的重组DNA工具通常支持亲和标签的使用,以便于蛋白质纯化和后续研究。 ASRT以稳定的四聚体形式存在。利用六组氨酸亲和标记的ASRT的X射线晶体结构和溶液NMR结果均显示其为主要的β链蛋白。我们已经观察到,亲和标记的ASRT表现出低聚的稳定性。在本交流中,我们概述了常用变性剂十二烷基硫酸钠(SDS)对ASRT四聚体包装的影响。我们的结果支持N末端六组氨酸标记的ASRT显示出异常的SDS抗性结构。 ASRT及其其他微生物种群中存在的同系物的异常稳定性可以进一步了解它们在受体,其他配体结合和信号传导中的作用。

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