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拟南芥 RPL23aA 和 RPL23aB 基因家族的转录和翻译的序列背景。

Sequence context for transcription and translation of the Arabidopsis RPL23aA and RPL23aB paralogs.

机构信息

Department of Biology, University of Saskatchewan, Saskatoon, Canada.

出版信息

Genome. 2011 Sep;54(9):738-51. doi: 10.1139/g11-029. Epub 2011 Sep 2.

Abstract

The 80S cytoplasmic ribosome is responsible for translating the transcriptome into the proteome. Demand for ribosome production depends on growth rate, and both the ribosomal RNA (rRNA) and ribosomal protein (RP) components must respond coordinately and rapidly to positive and negative growth stimuli to prevent deleterious effects of excess or insufficient subunits. The 81 RPs of the Arabidopsis 80S ribosome are encoded by multigene families that often exhibit overlapping patterns of transcript accumulation; however, only one isoform of each RP family (with the exception of a small number of acidic RPs) assembles into a single ribosome. Here we dissected the regulatory regions (RRs) of both members of the RPL23a family (RPL23aA and RPL23aB) to identify salient cis-acting elements involved in transcriptional, posttranscriptional, and translational regulation of expression. Full length and truncated RRs of RPL23a paralogs were cloned upstream of a GUS reporter gene and expressed in Arabidopsis transgenic plants. High level expression in mitotically active tissues, driven by RPL23aA and RPL23aB RRs, required TATA-box, telo-box, and site II motif elements. First and second introns were found to play a minor role in posttranscriptional regulation of paralogs, and conserved transcript features (e.g., UTR base composition) may be involved in enhancing translational efficiency. Overall, our results indicate that RPL23a expression is governed by a complex network of multiple regulatory layers.

摘要

80S 细胞质核糖体负责将转录组翻译为蛋白质组。核糖体的产生需求取决于生长速度,核糖体 RNA(rRNA)和核糖体蛋白(RP)成分必须协调快速地对正增长和负增长刺激做出响应,以防止亚基过多或过少造成有害影响。拟南芥 80S 核糖体的 81 个 RP 由多基因家族编码,这些家族通常表现出转录物积累的重叠模式;然而,只有每个 RP 家族的一个同工型(少数酸性 RP 除外)组装到单个核糖体中。在这里,我们剖析了 RPL23a 家族(RPL23aA 和 RPL23aB)两个成员的调控区(RR),以鉴定参与表达转录、转录后和翻译调控的显著顺式作用元件。RPL23a 旁系同源物的全长和截断 RR 被克隆在 GUS 报告基因的上游,并在拟南芥转基因植物中表达。由 RPL23aA 和 RPL23aB RR 驱动的有丝分裂活跃组织中的高水平表达需要 TATA 盒、端粒盒和位点 II 基序元件。第一和第二内含子在旁系同源物的转录后调控中作用较小,而保守的转录特征(例如 UTR 碱基组成)可能参与提高翻译效率。总体而言,我们的结果表明,RPL23a 的表达受多个调控层的复杂网络控制。

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