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首页> 外文期刊>Journal of Structural Biology >Crystallization of sparingly soluble stress-related proteins from cyanobacteria by controlled urea solublization
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Crystallization of sparingly soluble stress-related proteins from cyanobacteria by controlled urea solublization

机译:通过受控的尿素增溶作用,从蓝细菌中结晶出难溶的应激相关蛋白

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摘要

The phycobilisome photosynthetic antenna complex, found in cyanobacteria and red-algae, interacts with proteins expressed specifically to deal with different forms of physiological stress. Under conditions of nutrient starvation, the NblA protein is required for the process that leads to phycobilisome degradation and bleaching of the cells. HspA, a 16.5 kDa heat shock protein expressed in cyanobacterial cells, has been shown to provide functional stability to the phycobilisome during heat stress. We have cloned the genes encoding for these proteins into bacterial expression vectors in order to determine their three-dimensional structures. The resulting recombinant proteins were found to be sparingly soluble, limiting their usefulness in the performance of crystallization experiments. We have developed a novel protocol that utilizes relatively high concentrations of urea to afford sufficient solubility to the protein. This has lead to the successful growth of diffraction quality crystals of these proteins. Complete data sets collected to 2-2.5 angstrom from crystals of both proteins shows that the crystals are stable, and useful for structure determination. A preliminary structure of the NblA shows that denaturation has not occurred and specific protein-protein interactions have been preserved. We believe that this protocol may be a generally advantageous method to obtain well diffracting crystals of sparingly soluble proteins. (c) 2006 Elsevier Inc. All rights reserved.
机译:在蓝藻和红藻中发现的藻胆体光合天线复合体与专门表达的蛋白质相互作用,以应对不同形式的生理压力。在营养缺乏的条件下,导致藻胆小体降解和细胞漂白的过程需要NblA蛋白。 HspA是一种在蓝细菌细胞中表达的16.5 kDa的热激蛋白,已显示可在热应激期间为藻胆体提供功能稳定性。我们已经将编码这些蛋白质的基因克隆到细菌表达载体中,以确定它们的三维结构。发现所得重组蛋白微溶,限制了它们在结晶实验中的用途。我们已经开发出一种新颖的方案,该方案利用相对较高浓度的尿素为蛋白质提供足够的溶解度。这已经导致这些蛋白质的衍射质量晶体的成功生长。从两种蛋白质的晶体收集到2-2.5埃的完整数据集表明,该晶体是稳定的,并且对确定结构有用。 NblA的初步结构表明尚未发生变性,并且已保留了特定的蛋白质-蛋白质相互作用。我们认为,该协议可能是获得微溶蛋白良好衍射晶体的普遍有利方法。 (c)2006 Elsevier Inc.保留所有权利。

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