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From DNA sequence to improved functionality: using protein sequence comparisons to rapidly design a thermostable consensus phytase.

机译:从DNA序列到改进的功能:使用蛋白质序列比较快速设计热稳定的共有植酸酶。

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摘要

Naturally-occurring phytases having the required level of thermostability for application in animal feeding have not been found in nature thus far. We decided to de novo construct consensus phytases using primary protein sequence comparisons. A consensus enzyme based on 13 fungal phytase sequences had normal catalytic properties, but showed an unexpected 15-22 degrees C increase in unfolding temperature compared with each of its parents. As a first step towards understanding the molecular basis of increased heat resistance, the crystal structure of consensus phytase was determined and compared with that of Aspergillus niger phytase. Aspergillus niger phytase unfolds at much lower temperatures. In most cases, consensus residues were indeed expected, based on comparisons of both three-dimensional structures, to contribute more to phytase stabilization than non-consensus amino acids. For some consensus amino acids, predicted by structural comparisons to destabilize the protein, mutational analysis was performed. Interestingly, these consensus residues in fact increased the unfolding temperature of the consensus phytase. In summary, for fungal phytases apparently an unexpected direct link between protein sequence conservation and protein stability exists.
机译:迄今为止,在自然界中还没有发现具有动物饲养所需的热稳定性水平的天然肌醇六磷酸酶。我们决定使用一级蛋白质序列比较从头构建共有植酸酶。基于13种真菌植酸酶序列的共有酶具有正常的催化特性,但与每个亲本相比,其解折叠温度显示出意想不到的15-22摄氏度的升高。作为了解提高耐热性的分子基础的第一步,确定了共有植酸酶的晶体结构,并将其与黑曲霉植酸酶的晶体结构进行了比较。黑曲霉植酸酶在低得多的温度下展开。在大多数情况下,基于两个三维结构的比较,确实可以预期共有残基比非共有氨基酸对植酸酶稳定的贡献更大。对于通过结构比较预测使蛋白质不稳定的某些共有氨基酸,进行了突变分析。有趣的是,这些共有残基实际上增加了共有植酸酶的展开温度。总之,对于真菌植酸酶,显然在蛋白质序列保守性和蛋白质稳定性之间存在出乎意料的直接联系。

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