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启动子序列和结构决定表达的可变性,并赋予遗传变异的稳健性。

Promoter sequence and architecture determine expression variability and confer robustness to genetic variants.

机构信息

Department of Biology, University of Copenhagen, Copenhagen, Denmark.

出版信息

Elife. 2022 Nov 15;11:e80943. doi: 10.7554/eLife.80943.

Abstract

Genetic and environmental exposures cause variability in gene expression. Although most genes are affected in a population, their effect sizes vary greatly, indicating the existence of regulatory mechanisms that could amplify or attenuate expression variability. Here, we investigate the relationship between the sequence and transcription start site architectures of promoters and their expression variability across human individuals. We find that expression variability can be largely explained by a promoter's DNA sequence and its binding sites for specific transcription factors. We show that promoter expression variability reflects the biological process of a gene, demonstrating a selective trade-off between stability for metabolic genes and plasticity for responsive genes and those involved in signaling. Promoters with a rigid transcription start site architecture are more prone to have variable expression and to be associated with genetic variants with large effect sizes, while a flexible usage of transcription start sites within a promoter attenuates expression variability and limits genotypic effects. Our work provides insights into the variable nature of responsive genes and reveals a novel mechanism for supplying transcriptional and mutational robustness to essential genes through multiple transcription start site regions within a promoter.

摘要

遗传和环境暴露导致基因表达的可变性。尽管大多数基因在人群中受到影响,但它们的效应大小差异很大,这表明存在调节机制,可以放大或减弱表达的可变性。在这里,我们研究了启动子的序列和转录起始位点结构与其在人类个体中的表达可变性之间的关系。我们发现,表达可变性可以很大程度上由启动子的 DNA 序列及其与特定转录因子的结合位点来解释。我们表明,启动子的表达可变性反映了基因的生物学过程,在代谢基因的稳定性和响应基因以及那些参与信号转导的基因的可塑性之间表现出一种选择性的权衡。具有刚性转录起始位点结构的启动子更容易表现出可变的表达,并与具有较大效应大小的遗传变异相关,而启动子内转录起始位点的灵活使用则减弱了表达的可变性,并限制了基因型的影响。我们的工作为响应基因的可变性提供了深入的了解,并揭示了一种通过启动子内的多个转录起始位点区域为必需基因提供转录和突变鲁棒性的新机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31aa/9844987/594305eb792c/elife-80943-fig1.jpg

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