[剪接因子HNRNPH1调节circ -心肌反剪接,调节心肌肥厚的过程]。

Q3 Medicine
Rui Cai, Zhuo Huang, Wenxia He, Tianhong Ai, Xiaowei Song, Shuting Hu
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引用次数: 0

摘要

目的:探讨circ - myocardial back-splicing在心肌肥厚中的调控作用及其机制。方法:采用Sanger测序和RNase R测定法验证circ -心肌的循环性和稳定性,核质分离法测定circ -心肌的亚细胞分布。采用生物信息学分析和质谱法预测与circ -心肌相互作用的rna结合蛋白(rbp)。在大鼠心肌细胞H9C2细胞中,研究HNRNPH1和HNRNPL敲低和过表达对circ -心肌后剪接的影响。在血管紧张素II (Ang II)诱导心肌肥厚的H9C2细胞模型中,检测HNRNPH1的表达,评估HNRNPH1敲低和过表达对心肌肥厚进展的影响,分析HNRNPH1对circ - myocardial back-splicing的调控作用。结果:Sanger测序证实连接引物能够扩增出正确的circ -心肌序列。RNase R和核细胞质分离实验显示circ -心肌稳定且主要定位于细胞质。circ -心肌的生物信息学分析和质谱分析鉴定出HNRNPH1和HNRNPL是与circ -心肌相互作用的rbp。在H9C2细胞中,HNRNPH1敲低显著增强,过表达抑制circ -心肌反剪接;HNRNPH1过表达明显增加心肌肥厚标志物ANP和BNP的表达,而其敲低则相反。在angii诱导的H9C2细胞中,HNRNPH1表达显著升高,ANP和BNP表达升高,HNRNPH1敲低可明显升高circ -心肌表达,降低心肌表达,降低ANP和BNP表达。结论:HNRNPH1调控circ - myocardial back-splicing影响心肌肥厚的进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[The splicing factor HNRNPH1 regulates Circ-MYOCD back-splicing to modulate the course of cardiac hypertrophy].

Objectives: To explore the mechanism of Circ-MYOCD back-splicing and its regulatory role in myocardial hypertrophy.

Methods: Sanger sequencing and RNase R assays were performed to verify the circularity and stability of Circ-MYOCD, whose subcellular distribution was determined by nuclear-cytoplasmic fractionation. Bioinformatics analysis and mass spectrometry from pull-down assays were conducted to predict the RNA-binding proteins (RBPs) interacting with Circ-MYOCD. In rat cardiomyocytes H9C2 cells, the effects of HNRNPH1 and HNRNPL knockdown and overexpression on Circ-MYOCD back-splicing were evaluated. In a H9C2 cell model of angiotensin II (Ang II)-induced myocardial hypertrophy, the expression of HNRNPH1 was detected, the effects of HNRNPH1 knockdown and overexpression on progression of myocardial hypertrophy were assessed, and the regulatory effect of HNRNPH1 on Circ-MYOCD back-splicing was analyzed.

Results: Sanger sequencing confirmed that the junction primers could amplify the correct Circ-MYOCD sequence. RNase R and nuclear-cytoplasmic fractionation assays showed that Circ-MYOCD was stable and predominantly localized in the cytoplasm. Bioinformatics analysis and mass spectrometry from the Circ-MYOCD pull-down assay identified HNRNPH1 and HNRNPL as the RBPs interacting with Circ-MYOCD. In H9C2 cells, HNRNPH1 knockdown significantly enhanced while its overexpression inhibited Circ-MYOCD back-splicing; HNRNPH1 overexpression obviously increased the expressions of myocardial hypertrophy markers ANP and BNP, while its knockdown produced the opposite effect. In Ang II-induced H9C2 cells, which exhibited a significant increase of HNRNPH1 expression and increased expressions of ANP and BNP, HNRNPH1 knockdown obviously increased Circ-MYOCD expression, decreased MYOCD expression and lowered both ANP and BNP expressions.

Conclusions: HNRNPH1 regulates Circ-MYOCD back-splicing to influence the progression of myocardial hypertrophy.

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来源期刊
南方医科大学学报杂志
南方医科大学学报杂志 Medicine-Medicine (all)
CiteScore
1.50
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0.00%
发文量
208
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