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可变剪接与部分可变表达基因中的基因表达相关联。

Alternative splicing is coupled to gene expression in a subset of variably expressed genes.

作者信息

Karlebach Guy, Steinhaus Robin, Danis Daniel, Devoucoux Maeva, Anczuków Olga, Sheynkman Gloria, Seelow Dominik, Robinson Peter N

机构信息

The Jackson Laboratory for Genomic Medicine, Farmington, CT 06032, USA.

Exploratory Diagnostic Sciences, Berlin Institute of Health, 10117 Berlin, Germany.

出版信息

bioRxiv. 2023 Oct 11:2023.06.13.544742. doi: 10.1101/2023.06.13.544742.

Abstract

Numerous factors regulate alternative splicing of human genes at a co-transcriptional level. However, how alternative splicing depends on the regulation of gene expression is poorly understood. We leveraged data from the Genotype-Tissue Expression (GTEx) project to show a significant association of gene expression and splicing for 6874 (4.9%) of 141,043 exons in 1106 (13.3%) of 8314 genes with substantially variable expression in ten GTEx tissues. About half of these exons demonstrate higher inclusion with higher gene expression, and half demonstrate higher exclusion, with the observed direction of coupling being highly consistent across different tissues and in external datasets. The exons differ with respect to sequence characteristics, enriched sequence motifs, RNA polymerase II binding, and inferred transcription rate of downstream introns. The exons were enriched for hundreds of isoform-specific Gene Ontology annotations, suggesting that the coupling of expression and alternative splicing described here may provide an important gene regulatory mechanism that might be used in a variety of biological contexts. In particular, higher inclusion exons could play an important role during cell division.

摘要

众多因素在共转录水平上调控人类基因的可变剪接。然而,可变剪接如何依赖于基因表达的调控却知之甚少。我们利用基因型-组织表达(GTEx)项目的数据,发现在GTEx的十个组织中表达显著可变的8314个基因里,有1106个(13.3%)基因中的6874个外显子(占141,043个外显子的4.9%)的基因表达与剪接存在显著关联。这些外显子中约一半随着基因表达升高而包含率更高,另一半则随着基因表达升高而排除率更高,观察到的这种关联方向在不同组织和外部数据集中高度一致。这些外显子在序列特征、富集的序列基序、RNA聚合酶II结合以及下游内含子的推断转录速率方面存在差异。这些外显子富含数百种异构体特异性的基因本体注释,表明这里所描述的表达与可变剪接的关联可能提供了一种重要的基因调控机制,该机制可能在多种生物学背景中发挥作用。特别是,更高包含率的外显子可能在细胞分裂过程中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c45e/10584210/f6580241934f/nihpp-2023.06.13.544742v3-f0001.jpg

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