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一项在单核苷酸分辨率下对基因表达变异进行的系统研究揭示了 uAUG 在广泛的调控中的作用。

A systematic study of gene expression variation at single-nucleotide resolution reveals widespread regulatory roles for uAUGs.

机构信息

Department of Genetics, Center for Genome Sciences and Systems Biology, Washington University School of Medicine, St. Louis, MO 63108, USA.

出版信息

Genome Res. 2012 Jun;22(6):1089-97. doi: 10.1101/gr.117366.110. Epub 2012 Mar 27.

Abstract

Regulatory single-nucleotide polymorphisms (rSNPs) alter gene expression. Common approaches for identifying rSNPs focus on sequence variants in conserved regions; however, it is unknown what fraction of rSNPs is undetectable using this approach. We present a systematic analysis of gene expression variation at the single-nucleotide level in the Saccharomyces cerevisiae GAL1-10 regulatory region. We exhaustively mutated nearly every base and measured the expression of each variant with a sensitive dual reporter assay. We observed an expression change for 7% (43/582) of the bases in this region, most of which (35/43, 81%) reside in conserved positions. The most dramatic changes were caused by variants that produced AUGs upstream of the translation start (uAUGs), and we sought to understand the consequences and molecular mechanisms underlying this class of mutations. A genome-wide analysis showed that genes with uAUGs display significantly lower mRNA and protein levels than genes without uAUGs. To determine the generality of this mechanism, we introduced uAUGs into S. cerevisiae genes and observed significantly reduced expression in 17/21 instances (p < 0.01), suggesting that uAUGs are functional in a wide variety of sequence contexts. Quantification of mRNA and protein levels for uAUG mutants showed that uAUGs affect both transcription and translation. Expression of uAUG mutants under the upf1Δ strain demonstrated that uAUGs stimulate the nonsense-mediated decay pathway. Our results suggest that uAUGs are potent and widespread regulators of gene expression that act by attenuating both protein and RNA levels.

摘要

调控性单核苷酸多态性(rSNP)会改变基因表达。鉴定 rSNP 的常用方法侧重于保守区域的序列变异;然而,使用这种方法无法检测到多少 rSNP 尚不清楚。我们对酿酒酵母 GAL1-10 调控区中单核苷酸水平的基因表达变异进行了系统分析。我们详尽地突变了几乎每个碱基,并使用灵敏的双报告基因检测方法测量了每个变体的表达情况。我们观察到该区域中 7%(43/582)的碱基发生了表达变化,其中大多数(35/43,81%)位于保守位置。最显著的变化是由在翻译起始点上游产生 AUG 的变体引起的,我们试图了解这一类突变的后果和分子机制。全基因组分析显示,具有 uAUG 的基因的 mRNA 和蛋白水平明显低于没有 uAUG 的基因。为了确定这种机制的普遍性,我们将 uAUG 引入酿酒酵母基因中,观察到 21 个实例中的 17 个(p<0.01)表达显著降低,表明 uAUG 在各种序列背景下均具有功能。uAUG 突变体的 mRNA 和蛋白水平的定量分析表明,uAUG 既影响转录又影响翻译。uAUG 突变体在 upf1Δ 菌株中的表达表明,uAUG 刺激无意义介导的衰变途径。我们的结果表明,uAUG 是一种强有力的、广泛的基因表达调控因子,通过衰减蛋白质和 RNA 水平来发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2110/3371711/84c4ee5ddc25/1089fig1.jpg

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