Hottinger H, Stadelmann B, Pearson D, Frendewey D, Kohli J, Söll D
EMBO J. 1984 Feb;3(2):423-8. doi: 10.1002/j.1460-2075.1984.tb01823.x.
The inefficient suppressor sup3-i of the fission yeast Schizosaccharomyces pombe is an ochre suppressor. Sup3-i was derived from the efficient serine inserting UGA suppressor sup3-e. The cloning and sequencing of the sup3-i gene indicate that the suppressor is different from the parent sup3-e by a C----T substitution in the sequence coding for the middle position of the anticodon. In vitro translation assays supplemented with purified sup3-i tRNA and programmed with Xenopus globin mRNAs lead to the accumulation of a readthrough product in response to UAA termination signals, but not in response to UGA termination codons. Transformation of Saccharomyces cerevisiae nonsense mutant strains with plasmid DNA carrying the S. pombe sup3-i gene, led to ochre, but not amber or UGA suppression in vivo.
粟酒裂殖酵母的低效抑制因子sup3-i是一个赭石型抑制因子。Sup3-i源自高效的丝氨酸插入UGA抑制因子sup3-e。sup3-i基因的克隆和测序表明,该抑制因子与亲本sup3-e的区别在于反密码子中间位置编码序列中的一个C→T替换。在补充了纯化的sup3-i tRNA并用非洲爪蟾珠蛋白mRNA编程的体外翻译试验中,响应UAA终止信号会导致通读产物的积累,但响应UGA终止密码子则不会。用携带粟酒裂殖酵母sup3-i基因的质粒DNA转化酿酒酵母无义突变菌株,在体内导致赭石型抑制,但不导致琥珀型或UGA抑制。