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Cloning, Expression and Crystallisation of SGT1 Cochaperone Protein from Glaciozyma antarctica

机译:SGT1 Cochaperone蛋白从Glaciozyma antarctica的克隆,表达和结晶

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Studies on psycrophiles are now in the limelight of today’s post genomic era as they fascinate the research and development industries. The discovery from Glaciozyma antarctica, an extreme cold adapted yeast from Antarctica shows promising future to provide cost effective natural sustainable energy and create wider understanding of the property that permits this organisms to adapt to extreme temperature downshift. In plants and yeast, studies show the interaction between SGT1 and HSP90 are essential for disease resistance and heat stress by activating a number of resistance proteins. Here we report for the first time cloning, expression and crystallization of the recombinant SGT1 protein of G. antarctica (rGa_SGT1), a highly conserved eukaryotic protein that interacts with the molecular chaperones HSP90 (heat shock protein 90) apparently associated in a role of co-chaperone that may play important role in cold adaptation. The sequence analysis of rGa_SGT1 revealed the presence of all the characteristic features of SGT1 protein. In this study, we present the outlines and results of protein structural study of G. antarctica SGT1 protein. We validate this approach by starting with cloning the target insert into Ligation Independent Cloning system proceeded with expression using E. coli system, and crystallisation of the target rGA_SGT1 protein. The work is still on going with the target subunit of the complex proteins yielded crystals. These results, still ongoing, open a platform for better understanding of the uniqueness of this crucial molecular machine function in cold adaptation.
机译:对Psycrophiles的研究现在处于当今后基因组时代的敏捷者,因为它们迷上了研发行业。来自Glaciozyma Antarctica的发现,来自南极的极端寒冷适应的酵母,显示了有希望的未来,提供具有成本效益的自然可持续能源,并创造了更广泛的理解,允许这种有机体适应极端温度降低。在植物和酵母中,研究表明SGT1和HSP90之间的相互作用对于通过激活许多抗性蛋白质来抗性和热应力至关重要。在这里,我们报告了G.南极(RGA_SGT1)的重组SGT1蛋白的第一次克隆,表达和结晶,这是一种高度保守的真核蛋白,其与分子伴侣HSP90(热休克蛋白90)相互作用,显然在CO的作用中-Chaperone可能在冷适应中发挥重要作用。 RGA_SGT1的序列分析显示出SGT1蛋白的所有特征的存在。在这项研究中,我们介绍了G. antarctica SGT1蛋白的蛋白质结构研究的概述和结果。通过使用大肠杆菌系统克隆到结扎独立的克隆系统,通过将目标插入克隆到结扎独立的克隆系统来验证这种方法,并使用大肠杆菌系统进行表达和靶RGA_SGT1蛋白的结晶。该作品仍然与复合蛋白质的靶亚基产生晶体。这些结果仍然持续,打开一个平台,以便更好地理解这种关键的分子机器功能在冷自适应中的独特性。

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