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A highly stable protein chimera built from fragments of different folds

机译:由不同折叠片段组成的高度稳定的蛋白质嵌合体

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摘要

Proteins increased in complexity during the course of evolution. Domains as well as subdomain-sized fragments were recruited and adapted to form new proteins and novel folds. This concept can be used in engineering to construct new proteins. We previously reported the combination of fragments from two ancient protein folds, a flavodoxin-like and a (βα) 8-barrel protein. Here we report two further attempts at engineering a chimeric protein from fragments of these folds. While one of the constructs showed a high tendency to aggregate, the other turned out to be a highly stable, well-structured protein. In terms of stability against heat and chemical denaturation this chimera, named NarLHisF, is superior to the earlier presented CheYHisF. This is the second instance of a chimera build from two different protein folds, which demonstrates how easily recombination can lead to the development and diversification of new proteins - a mechanism that most likely occurred frequently in the course of evolution. Based on the results of the failed and the successful chimera, we discuss important considerations for a general design strategy for fold chimeras.
机译:蛋白质在进化过程中的复杂性增加。募集域以及亚域大小的片段,并使其适应形成新的蛋白质和新的折叠。此概念可用于工程设计中以构建新蛋白质。我们之前曾报道过两种古老蛋白质折叠片段的组合,一种是黄素类毒素,一种是(βα)8桶蛋白质。在这里,我们报告了从这些折叠片段改造嵌合蛋白的两次尝试。尽管其中一个构建体显示出高聚集趋势,但另一个却是高度稳定,结构良好的蛋白质。就耐热和化学变性的稳定性而言,这种名为NarLHisF的嵌合体优于早先提出的CheYHisF。这是由两个不同蛋白质折叠产生的嵌合体的第二个实例,这表明重组如何容易导致新蛋白质的发展和多样化-这种机制最有可能在进化过程中频繁发生。基于失败和成功的嵌合体的结果,我们讨论了折叠嵌合体一般设计策略的重要考虑。

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