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Synthesis of unnatural amino acids for genetic encoding by the pyrrolysyl-tRNA/RNA synthetase system

机译:吡咯基-tRNA / RNA合成酶系统合成用于遗传编码的非天然氨基酸

摘要

The complexity of all biomolecules in existence today can be attributed to the variation of the amino acid repertoire. In nature, 20 canonical amino acids are translated to form these biomolecules, however, many of these amino acids have revealed posttranslational modifications (i.e. acetylation, methylation) after incorporation. Amino acids that exhibit PTM are known for their involvement in cellular processes such as DNA repair and DNA replication; these PTMs are commonly found on histones within the chromatin complex. Utilization of in vivo site-specific incorporation has recently reported functionality of post-translationally modified amino acids.1 xii Here we report the synthesis and in vivo site-specific incorporation of the histone PTM, 2-hydroxyisobutyrl lysine (Khib), with the pyrrolysyl tRNA/ RNA synthetase system. This translational machine can better serve to probe Khib for functional benefits. Additionally, this thesis focuses much of its attention on the development of unnatural amino acids (UAA) with optogenetic characteristics. These UAAs, if site-specifically incorporated, can be used to control enzymes and proteins through rapid light perturbation (365nm UV light). Furthermore, discussed is the synthesis of photo-caged threonine and photo-caged serine as potential substrates for the pyrrolysyl translational machinery.
机译:今天存在的所有生物分子的复杂性可以归因于氨基酸库的变化。自然界中,翻译出20种典型氨基酸以形成这些生物分子,但是,其中许多氨基酸在掺入后已揭示出翻译后修饰(即乙酰化,甲基化)。表现出PTM的氨基酸因参与细胞修复(例如DNA修复和DNA复制)而闻名。这些PTM通常在染色质复合物中的组蛋白上发现。利用体内位点特异性结合最近报道了翻译后修饰的氨基酸的功能。1xii在这里,我们报道了组蛋白PTM 2-羟基异丁酰赖氨酸(Khib)与吡咯基的合成和体内位点特异性结合。 tRNA / RNA合成酶系统。这种平移机可以更好地用于探测Khib的功能优势。另外,本论文将其大部分注意力集中在具有光遗传学特征的非天然氨基酸(UAA)的开发上。这些UAA(如果位点特异性结合)可以用于通过快速光扰动(365nm紫外线)控制酶和蛋白质。此外,讨论了光笼固的苏氨酸和光笼固的丝氨酸作为吡咯基翻译机器的潜在底物的合成。

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    Knight William A;

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  • 年度 2015
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