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RNA 结合蛋白调节 TGF-β 后的转录反应,以协调小鼠内皮细胞的功能和间充质激活。

RNA-Binding Proteins Regulate Post-Transcriptional Responses to TGF-β to Coordinate Function and Mesenchymal Activation of Murine Endothelial Cells.

机构信息

Department of Cardiovascular Physiology (R.W., M.K., I.P., S.H., S.G., J.H.), European Center for Angioscience (ECAS), Medical Faculty Mannheim of Heidelberg University, Germany.

German Center for Cardiovascular Research (DZHK), partner site Heidelberg/Mannheim (R.W., M.K., S.H., S.G., G.D., J.H.).

出版信息

Arterioscler Thromb Vasc Biol. 2023 Oct;43(10):1967-1989. doi: 10.1161/ATVBAHA.123.319925. Epub 2023 Aug 31.

Abstract

BACKGROUND

Endothelial cells (ECs) are primed to respond to various signaling cues. For example, TGF (transforming growth factor)-β has major effects on EC function and phenotype by driving ECs towards a more mesenchymal state (ie, triggering endothelial to mesenchymal activation), a dynamic process associated with cardiovascular diseases. Although transcriptional regulation triggered by TGF-β in ECs is well characterized, post-transcriptional regulatory mechanisms induced by TGF-β remain largely unknown.

METHODS

Using RNA interactome capture, we identified global TGF-β driven changes in RNA-binding proteins in ECs. We investigated specific changes in the RNA-binding patterns of hnRNP H1 (heterogeneous nuclear ribonucleoprotein H1) and Csde1 (cold shock domain containing E1) using RNA immunoprecipitation and overlapped this with RNA-sequencing data after knockdown of either protein for functional insight. Using a modified proximity ligation assay, we visualized the specific interactions between hnRNP H1 and Csde1 and target RNAs in situ both in vitro and in mouse heart sections.

RESULTS

Characterization of TGF-β-regulated RBPs (RNA-binding proteins) revealed hnRNP H1 and Csde1 as key regulators of the cellular response to TGF-β at the post-transcriptional level, with loss of either protein-promoting mesenchymal activation in ECs. We found that TGF-β drives an increase in binding of hnRNP H1 to its target RNAs, offsetting mesenchymal activation, but a decrease in Csde1 RNA-binding, facilitating this process. Both, hnRNP H1 and Csde1, dynamically bind and regulate specific subsets of mRNAs related to mesenchymal activation and endothelial function.

CONCLUSIONS

Together, we show that RBPs play a key role in the endothelial response to TGF-β stimulation at the post-transcriptional level and that the RBPs hnRNP H1 and Csde1 serve to maintain EC function and counteract mesenchymal activation. We propose that TGF-β profoundly modifies RNA-protein interaction entailing feedback and feed-forward control at the post-transcriptional level, to fine-tune mesenchymal activation in ECs.

摘要

背景

内皮细胞(ECs)对外界信号刺激具有反应性。例如,TGF(转化生长因子)-β 通过促使 ECs 向更间充质状态(即触发内皮向间充质激活)的方向发展,对 EC 功能和表型产生重大影响,这是一个与心血管疾病相关的动态过程。尽管 TGF-β 诱导的 EC 转录调控已得到充分描述,但 TGF-β 诱导的转录后调控机制在很大程度上仍不清楚。

方法

使用 RNA 相互作用捕获技术,我们鉴定了 TGF-β 诱导的 ECs 中 RNA 结合蛋白的全局变化。我们通过 RNA 免疫沉淀研究了 hnRNP H1(异质核核糖核蛋白 H1)和 Csde1(冷休克结构域包含 E1)的 RNA 结合模式的特定变化,并将这些变化与两种蛋白质敲低后的 RNA 测序数据进行了重叠,以获得功能见解。使用改良的邻近连接测定法,我们在体外和小鼠心脏切片中可视化了 hnRNP H1 和 Csde1 与靶 RNA 之间的特定相互作用。

结果

TGF-β 调节的 RBPs(RNA 结合蛋白)的特征表明,hnRNP H1 和 Csde1 是 TGF-β 诱导的细胞反应的关键调节因子,两种蛋白的缺失均可促进 EC 中的间充质激活。我们发现,TGF-β 驱动 hnRNP H1 与其靶 RNA 结合的增加,抵消了间充质激活,但 Csde1 RNA 结合减少,促进了这一过程。hnRNP H1 和 Csde1 都可以动态结合并调节与间充质激活和内皮功能相关的特定 mRNA 子集。

结论

总之,我们表明 RBPs 在 TGF-β 刺激的内皮反应中在转录后水平发挥关键作用,并且 RBPs hnRNP H1 和 Csde1 有助于维持 EC 功能并抑制间充质激活。我们提出 TGF-β 深刻地改变了 RNA-蛋白相互作用,在转录后水平上涉及反馈和前馈控制,以精细调节 EC 中的间充质激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5696/10521797/415f114582f0/atv-43-1967-g001.jpg

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