Favorova O O
Mol Biol (Mosk). 1984 Jan-Feb;18(1):205-26.
The correct aminoacylation of tRNA with the proper aminoacid by aminoacyl-tRNA synthetase is one of the key reactions which determines the overall high fidelity of protein biosynthesis. The initial selection of the amino acid is achieved in the active centre of the synthetase at the activation step due to differences in the side chains binding energies of specific substrate and the competing amino acids present in cell. If, nevertheless, the activation of amino acids structurally similar to the cognate one does proceed, additional mechanisms of correction which are based on the decomposition of unstable noncognate (intermediate or final) product of the tRNA aminoacylation reaction, by synthetase are switched on. In this review the literature on the specificity of aminoacyl-tRNA synthetases at amino acid activation step is analyzed along with the proofreading mechanisms which allow the elimination of the errors, leading to so called superspecifity of aminoacyl-tRNA synthetases.
氨酰 - tRNA合成酶将正确的氨基酸与相应的tRNA进行正确的氨酰化反应,是决定蛋白质生物合成整体高保真度的关键反应之一。由于特定底物与细胞中存在的竞争性氨基酸的侧链结合能不同,在激活步骤中,在合成酶的活性中心实现了对氨基酸的初始选择。然而,如果与同源氨基酸结构相似的氨基酸确实发生了激活反应,那么基于tRNA氨酰化反应不稳定的非同源(中间或最终)产物分解的额外校正机制就会被合成酶启动。在这篇综述中,分析了关于氨酰 - tRNA合成酶在氨基酸激活步骤的特异性的文献,以及允许消除错误的校对机制,这些错误会导致氨酰 - tRNA合成酶出现所谓的超特异性。