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非洲爪蟾卵母细胞中tRNA剪接和核转运的最小内含子要求。

Minimum intron requirements for tRNA splicing and nuclear transport in Xenopus oocytes.

作者信息

Haselbeck R C, Greer C L

机构信息

Department of Biological Chemistry, College of Medicine, University of California, Irvine 92717.

出版信息

Biochemistry. 1993 Aug 24;32(33):8575-81. doi: 10.1021/bi00084a026.

Abstract

The presence or absence of an intron defines two classes of eukaryotic nuclear tRNA genes whose transcripts differ in a requirement for splicing. Using quantitative nuclear microinjection, we have previously found that nucleocytoplasmic transport of these two classes of tRNAs involves pathways which differ in one or more limiting components. To examine substrate features which distinguish these two pathways, a series of variants of a Xenopus tRNA(Tyr) gene were constructed in which the intron size was altered. The splicing and transport properties of the resulting transcripts were examined in oocyte microinjection and in vitro processing assays. The addition of one or two nucleotides at the splice site equivalent in an intronless gene produced transcripts which could be transported without splicing. However, transport was reduced relative to the mature-sequence tRNA, suggesting the anticodon loop (interrupted in pre-tRNAs) may be recognized by the intronless tRNA transport apparatus. Transcripts with four- or six-nucleotide intervening sequences were incompletely spliced with cleavage at only the 3' splice site. Neither unspliced precursor nor partially processed intermediates were efficiently transported. The results of coinjection experiments using tRNA and pre-tRNA competitors suggest that simple retention by the splicing apparatus may not account for failure to export these RNAs. Finally, a requirement for splicing is not unique to transport of pre-tRNA(Tyr) since a pre-tRNA(3Leu) variant which was not spliced was also not exported.

摘要

内含子的有无界定了两类真核细胞核tRNA基因,其转录本在剪接需求上存在差异。我们先前利用定量核显微注射发现,这两类tRNA的核质运输涉及一条或多条限制成分不同的途径。为了研究区分这两条途径的底物特征,构建了一系列非洲爪蟾tRNA(Tyr)基因变体,其中内含子大小发生了改变。在卵母细胞显微注射和体外加工试验中检测了所得转录本的剪接和运输特性。在无内含子基因的剪接位点处添加一两个核苷酸会产生无需剪接即可运输的转录本。然而,相对于成熟序列tRNA,其运输效率降低,这表明无内含子tRNA运输装置可能识别反密码子环(在pre-tRNA中中断)。具有四个或六个核苷酸间隔序列的转录本仅在3'剪接位点处不完全剪接并发生切割。未剪接的前体和部分加工的中间体均未有效运输。使用tRNA和pre-tRNA竞争剂进行共注射实验的结果表明,剪接装置的简单滞留可能无法解释这些RNA未能输出的原因。最后,剪接需求并非pre-tRNA(Tyr)运输所特有,因为一个未剪接的pre-tRNA(3Leu)变体也未输出。

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