Ueda T, Watanabe K
Department of Industrial Chemistry, Faculty of Engineering, University of Tokyo, Japan.
Orig Life Evol Biosph. 1993 Dec;23(5-6):345-64. doi: 10.1007/BF01582085.
The discovery of non-universal genetic codes in several mitochondria and nuclear systems during the part ten years has necessitated a reconsideration of the concept that the genetic code is universal and frozen, as was once believed. Here, the flexibility of the relationship between codons and amino acids is discussed on the basis of the distribution of non-universal genetic codes in various organisms insofar as has been observed to date. Judging from the result of recent investigations into tRNA identity, it would appear that the non-participation of the anticodon in recognition by aminoacyl-tRNA synthetase has significantly influenced the variability of codons.
在过去十年中,在多个线粒体和核系统中发现了非通用遗传密码,这使得人们不得不重新审视曾经被认为的遗传密码是通用且固定不变的这一概念。在此,根据迄今为止所观察到的各种生物体中非通用遗传密码的分布情况,讨论了密码子与氨基酸之间关系的灵活性。从最近对tRNA识别特性的研究结果来看,似乎反密码子不参与氨酰tRNA合成酶的识别过程对密码子的变异性产生了重大影响。