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酵母tRNASer一种次要种类的前体包含一个间插序列。

A precursor to a minor species of yeast tRNASer contains an intervening sequence.

作者信息

Etcheverry T, Colby D, Guthrie C

出版信息

Cell. 1979 Sep;18(1):11-26. doi: 10.1016/0092-8674(79)90349-0.

Abstract

Certain tRNAs in S. cerevisiae (tRNATyr and tRNAPhe) arise via precursor molecules which are mature at the 5' and 3' termini but contain intervening sequences adjacent to the anticodon (Knapp et al., 1978; O'Farrell et al., 1978). In addition to these molecules, precursors to several other tRNAs accumulate in a temperature-sensitive mutant (ts136) at the nonpermissive temperature. We have analyzed one of these species and shown that it is a precursor to a minor species of tRNASer. This precursor is also mature at both termini and contains an intervening sequence of 19 nucleotides adjacent to the hypermodified A residue 3' to the anticodon. The sequence can be arranged in a secondary structure in which the anticodon stem is extended by additional base-pairing, and contains the sites of excision and ligation within two looped regions. Support for this structure was provided by analysis of the products of limited digestion with RNAase T1. recently Piper (1978) reported the isolation of a minor species of tRNASer which decodes UCG. He found this species to be structurally heterogeneous and determined that the less abundant form corresponds to the tRNA which is altered in the recessive lethal SUP-RL1 amber suppressor. Our data now suggest that the more abundant form may be restricted to reading UCA in vivo; thus mutation of the minor species would result in complete loss of UCG-decoding ability and explain the recessive lethality of SUP-RL1. We have shown that the precursor which accumulates in ts136 corresponds exclusively to this minor tRNASerUCG species. Our results suggest that this may be the only gene for tRNASer in yeast which contains an intervening sequence.

摘要

酿酒酵母中的某些tRNA(tRNATyr和tRNAPhe)通过前体分子产生,这些前体分子在5'和3'末端成熟,但在反密码子附近含有间隔序列(克纳普等人,1978年;奥法雷尔等人,1978年)。除了这些分子外,其他几种tRNA的前体在温度敏感突变体(ts136)中在非允许温度下积累。我们分析了其中一种,发现它是一种次要tRNASer种类的前体。这种前体在两个末端也都是成熟的,并且在反密码子3'端的超修饰A残基附近含有一个19个核苷酸的间隔序列。该序列可以排列成二级结构,其中反密码子茎通过额外的碱基配对得到延伸,并且在两个环状区域内包含切除和连接位点。用核糖核酸酶T1进行有限消化产物的分析为这种结构提供了支持。最近派珀(1978年)报道分离出一种次要的tRNASer种类,它解码UCG。他发现这种种类在结构上是异质的,并确定较不丰富的形式对应于在隐性致死的SUP-RL1琥珀抑制子中发生改变的tRNA。我们现在的数据表明,较丰富的形式在体内可能仅限于读取UCA;因此,次要种类的突变将导致UCG解码能力完全丧失,并解释SUP-RL1的隐性致死性。我们已经表明,在ts136中积累的前体仅对应于这种次要的tRNASerUCG种类。我们的结果表明,这可能是酵母中唯一含有间隔序列的tRNASer基因。

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