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一系列复杂的序列增强了非洲爪蟾的核糖体转录。

A complex array of sequences enhances ribosomal transcription in Xenopus laevis.

作者信息

De Winter R F, Moss T

机构信息

Biophysics Laboratories, Portsmouth Polytechnic, U.K.

出版信息

J Mol Biol. 1987 Aug 20;196(4):813-27. doi: 10.1016/0022-2836(87)90407-4.

Abstract

The ribosomal DNA spacer in Xenopus laevis was shown in previous studies to be involved in regulating the expression of the ribosomal genes. Here transcription enhancement by this spacer has been studied in some detail, to fully identify the sequences involved and to determine their relative importance in this phenomenon. It is shown that the 60/81 base-pair (bp) repeats, which were reported to be enhancer elements, act as part of a mode of enhancement whose effect is amplified by the spacer promoters or Bam islands. The "Bam super repeat", a combination of spacer promoter and 60/81 bp elements, is the major enhancer unit. Within a Bam super repeat, a near linear correlation between the number of 60/81 bp elements and enhancer activity is observed. Thus, there is no significant co-operativity in the binding of transcription factors to an array of these elements. Multiple Bam super repeats do not act additively and may actually interfere with each others action. Surprisingly this effect is observed both in the presence and absence of active spacer promoters. Sequences between the 3' end of the 28 S coding region and the first spacer promoter may also be involved in enhancement but only in a very minor fashion. In confirmation of recent studies, the presence of the unique ribosomal termination sequence, 213 bp upstream from the pre-rRNA initiation site, is essential for efficient promotion, as deletion of this sequence virtually abolishes pre-rRNA- transcription. These data are discussed in terms of the possible mechanisms of transcription enhancement.

摘要

在非洲爪蟾中,核糖体DNA间隔区在先前的研究中已被证明参与核糖体基因表达的调控。在此,对该间隔区的转录增强作用进行了较为详细的研究,以全面鉴定其中涉及的序列,并确定它们在这一现象中的相对重要性。结果表明,据报道为增强子元件的60/81碱基对(bp)重复序列,作为一种增强模式的一部分发挥作用,其效应会被间隔区启动子或Bam岛放大。“Bam超级重复序列”,即间隔区启动子和60/81 bp元件的组合,是主要的增强子单元。在一个Bam超级重复序列内,观察到60/81 bp元件的数量与增强子活性之间存在近乎线性的相关性。因此,转录因子与这些元件阵列的结合不存在显著的协同作用。多个Bam超级重复序列并非相加起作用,实际上可能会相互干扰彼此的作用。令人惊讶的是,无论有无活性间隔区启动子,都会观察到这种效应。28 S编码区3'端与第一个间隔区启动子之间的序列也可能参与增强作用,但程度非常小。作为对近期研究的证实,位于前体rRNA起始位点上游213 bp处的独特核糖体终止序列的存在,对于有效启动至关重要,因为删除该序列实际上会消除前体rRNA的转录。将根据转录增强的可能机制对这些数据进行讨论。

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