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首页> 外文期刊>Angewandte Chemie >Probing Protein Structure and Function with an Expanded Genetic Code
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Probing Protein Structure and Function with an Expanded Genetic Code

机译:用扩展的遗传密码探测蛋白质的结构和功能

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摘要

A general biosynthetic method has been developed which makes it possible to site-specifically incorporate unnatural amino acids with novel properties into proteins. In this approach the codon encoding the amino acid of interest is replaced with the "blank" nonsense codon UAG by oligonucleotide-directed muta-genesis. A suppressor tRNA that recognizes this codon is generated by run-off transcription and then chemically amino-acylated with the desired unnatural amino acid. Addition of the mutagenized gene and the aminoacylated suppressor tRNA to an in vitro extract capable of supporting protein biosynthesis generates a mutant protein containing the unnatural amino acid at the specified position. This methodology has recently been used to study the stability, specificity, and catalytic properties of a number of proteins. In these studies amino acids and analogues possessing altered hydrogen-bonding, electronic, and steric properties and unique backbone conformations have all been site-specifically incorporated into proteins. In addition, photoactivatable amino acids, isotopi-cally labeled amino acids, and amino acids bearing biophysical probes have been inserted site-specifically This chemistry increases our ability to carry out detailed physical organic studies on this important class of macromolec-ules.
机译:已经开发了一种通用的生物合成方法,该方法可以将具有新特性的非天然氨基酸位点特异性地掺入蛋白质中。在这种方法中,通过寡核苷酸定向诱变将编码目的氨基酸的密码子替换为“空白”无义密码子UAG。通过径流转录产生识别该密码子的抑制性tRNA,然后用所需的非天然氨基酸进行化学氨基酰化。将诱变的基因和氨基酰化的抑制性tRNA添加到能够支持蛋白质生物合成的体外提取物中,即可在指定位置生成包含非天然氨基酸的突变蛋白。该方法最近已用于研究许多蛋白质的稳定性,特异性和催化特性。在这些研究中,具有改变的氢键,电子和空间特性以及独特的骨架构象的氨基酸和类似物均已位点特异性地掺入蛋白质中。此外,可光活化的氨基酸,同位素标记的氨基酸和带有生物物理探针的氨基酸已位点特异性插入。这种化学作用增加了我们对这一重要大分子进行详细有机物理研究的能力。

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