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在剪接连接处发生突变的酵母tRNA前体在体内能被正确加工。

Yeast tRNA precursor mutated at a splice junction is correctly processed in vivo.

作者信息

Colby D, Leboy P S, Guthrie C

出版信息

Proc Natl Acad Sci U S A. 1981 Jan;78(1):415-9. doi: 10.1073/pnas.78.1.415.

Abstract

Yeast mutants with decreased expression of a tRNATyr gene were obtained by selection for functional inactivation of the tyrosine-inserting ochre suppressor SUP4 and subsequent screening for production of the tRNA gene product in vivo. One mutant with reduced suppressor activity was characterized by a decreased quantity of the suppressor-specific tRNA; a precursor to this tRNA, matured at both 5' and 3' termini but still containing a 14-nucleotide intervening sequence, was present in an amount greater than 7-fold that in the parent. By RNA sequence analysis of the accumulated precursor, we have identified the mutation as an A leads to G transition at the 5' splice junction. Similar analysis of the mature tRNA produced in this mutant demonstrated that the intervening sequence was accurately excised. We conclude that the specific sequence of nucleotides at this splice junction affects the efficiency but not the fidelity of processing.

摘要

通过对酪氨酸插入赭石抑制因子SUP4的功能失活进行筛选,并随后在体内筛选tRNA基因产物的产生,获得了tRNATyr基因表达降低的酵母突变体。一个抑制活性降低的突变体的特征是抑制因子特异性tRNA的数量减少;这种tRNA的前体在5'和3'末端均已成熟,但仍含有14个核苷酸的间隔序列,其含量比亲本中的含量高7倍以上。通过对积累的前体进行RNA序列分析,我们已将该突变鉴定为5'剪接连接处的A到G转换。对该突变体中产生的成熟tRNA的类似分析表明,间隔序列已被准确切除。我们得出结论,该剪接连接处的特定核苷酸序列影响加工效率,但不影响加工的保真度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a23/319064/db727f238c87/pnas00652-0439-a.jpg

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