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Expanding the Genetic Code

机译:扩展遗传密码

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摘要

Although chemists can synthesize virtually any small organic molecule,our ability to rationally manipulate the structures of proteins is quite limited,despite their involvement in virtually every life process.For most proteins,modifications are largely restricted to substitutions among the common 20 amino acids.Herein we describe recent advances that make it possible to add new building blocks to the genetic codes of both prokaryoiic and eukaryotic organisms.Over 30 novel amino acids have been genetically encoded in response to unique triplet and quadruplet codons including fluorescent,photoreactive,and redox-active amino acids,glycosylated amino acids,and amino acids with keto,azido,acetylenic,and heavy-atom-containing side chains.By removing the limitations imposed by the existing 20 amino acid code,it should be possible to generate proteins and perhaps entire organisms with new or enhanced properties.
机译:尽管化学家几乎可以合成任何小的有机分子,但是我们合理地操纵蛋白质结构的能力还是很有限的,尽管他们参与了几乎每个生命过程。对于大多数蛋白质,修饰很大程度上仅限于常见的20个氨基酸之间的取代。我们描述了可以为原核生物和真核生物的遗传密码添加新的组成部分的最新进展。已经对30多种新氨基酸进行了遗传编码,以响应独特的三联体和四联体密码子,包括荧光,光反应性和氧化还原活性氨基酸,糖基化氨基酸以及带有酮基,叠氮基,炔基和含重原子的侧链的氨基酸。通过消除现有的20个氨基酸代码所施加的限制,应该可以产生蛋白质,甚至可能是整个生物具有新的或增强的属性。

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