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tRNA 3'-氨基尾化用于稳定的氨基酸连接。

tRNA 3'-amino-tailing for stable amino acid attachment.

机构信息

Department of Biochemistry and Molecular Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.

出版信息

RNA. 2018 Dec;24(12):1878-1885. doi: 10.1261/rna.068015.118. Epub 2018 Sep 14.

Abstract

Amino acids are attached to the tRNA 3'-end as a prerequisite for entering the ribosome for protein synthesis. Amino acid attachment also gives tRNA access to nonribosomal cellular activities. However, the normal attachment is via an ester linkage between the carboxylic group of the amino acid and the 3'-hydroxyl of the terminal A76 ribose in tRNA. The instability of this ester linkage has severely hampered studies of aminoacyl-tRNAs. Although the use of 3'-amino-3'-deoxy A76 in a 3'-amino-tailed tRNA provides stable aminoacyl attachment via an amide linkage, there are multiple tailing protocols and the efficiency of each relative to the others is unknown. Here we compare five different tailing protocols in parallel, all dependent on the CCA-adding enzyme [CTP(ATP): tRNA nucleotidyl transferase; abbreviated as the CCA enzyme] to exchange the natural ribose with the modified one. We show that the most efficient protocol is achieved by the CCA-catalyzed pyrophosphorolysis removal of the natural A76 in equilibrium with the addition of the appropriate ATP analog to synthesize the modified 3'-end. This protocol for 3'-amino-tailing affords quantitative and stable attachment of a broad range of amino acids to tRNA, indicating its general utility for studies of aminoacyl-tRNAs in both canonical and noncanonical activities.

摘要

氨基酸连接到 tRNA 的 3' 端,是进入核糖体进行蛋白质合成的前提条件。氨基酸的连接也赋予 tRNA 参与非核糖体细胞活动的能力。然而,正常的连接是通过氨基酸的羧基与 tRNA 末端 A76 核糖的 3'-羟基之间的酯键完成的。这种酯键的不稳定性严重阻碍了氨酰-tRNA 的研究。尽管在 3'-氨基修饰的 tRNA 中使用 3'-氨基-3'-脱氧 A76 可以通过酰胺键提供稳定的氨酰基连接,但存在多种修饰方法,并且每种方法相对于其他方法的效率是未知的。在这里,我们平行比较了五种不同的修饰方法,它们都依赖于 CCA 添加酶 [CTP(ATP):tRNA 核苷酸转移酶;缩写为 CCA 酶] 来用修饰的核糖取代天然的核糖。我们表明,最有效的方法是通过 CCA 催化的焦磷酸解,在适当的 ATP 类似物的添加下平衡去除天然的 A76,以合成修饰的 3' 端。这种 3'-氨基修饰的方法可定量且稳定地将广泛的氨基酸连接到 tRNA 上,表明其在研究经典和非经典活性中的氨酰-tRNA 方面具有普遍的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/274d/6239183/66b510eab754/1878f01.jpg

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