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首页> 外文期刊>Journal of Molecular Biology >Designing repeat proteins: well-expressed, soluble and stable proteins from combinatorial libraries of consensus ankyrin repeat proteins.
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Designing repeat proteins: well-expressed, soluble and stable proteins from combinatorial libraries of consensus ankyrin repeat proteins.

机译:设计重复蛋白:来自共有锚蛋白重复蛋白组合库的表达良好,可溶且稳定的蛋白。

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摘要

We describe an efficient way to generate combinatorial libraries of stable, soluble and well-expressed ankyrin repeat (AR) proteins. Using a combination of sequence and structure consensus analyses, we designed a 33 amino acid residue AR module with seven randomized positions having a theoretical diversity of 7.2x10(7). Different numbers of this module were cloned between N and C-terminal capping repeats, i.e. ARs designed to shield the hydrophobic core of stacked AR modules. In this manner, combinatorial libraries of designed AR proteins consisting of four to six repeats were generated, thereby potentiating the theoretical diversity. All randomly chosen library members were expressed in soluble form in the cytoplasm of Escherichia coli in amounts up to 200 mg per 1 l of shake-flask culture. Virtually pure proteins were obtained in a single purification step. The designed AR proteins are monomeric and display CD spectra identical with those of natural AR proteins. At the same time, our AR proteins are highly thermostable, with T(m) values ranging from 66 degrees C to well above 85 degrees C. Thus, our combinatorial library members possess the properties required for biotechnological applications. Moreover, the favorable biophysical properties and the modularity of the AR fold may account, partly, for the abundance of natural AR proteins.
机译:我们描述了一种有效的方式来生成稳定,可溶和表达良好的锚蛋白重复(AR)蛋白质的组合库。使用序列和结构共有分析的组合,我们设计了一个33个氨基酸残基的AR模块,具有七个随机位置,其理论多样性为7.2x10(7)。将不同数量的该模块克隆到N和C端加帽重复序列之间,即设计用于屏蔽堆叠式AR模块的疏水核心的AR。以这种方式,产生了由4至6个重复组成的设计的AR蛋白的组合文库,从而增强了理论多样性。所有随机选择的文库成员均以可溶形式在大肠杆菌的细胞质中表达,其量为每1升摇瓶培养物中200毫克。在单个纯化步骤中获得了几乎纯净的蛋白质。设计的AR蛋白是单体的,并且显示出与天然AR蛋白相同的CD光谱。同时,我们的AR蛋白具有很高的热稳定性,T(m)值的范围从66摄氏度到远高于85摄氏度。因此,我们的组合文库成员具有生物技术应用所需的特性。而且,AR折叠的有利的生物物理性质和模块性可以部分地解释天然AR蛋白的丰富性。

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