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糖尿病前期大鼠模型中心脏 miRNA 的表达及其 mRNA 靶标。

Cardiac miRNA Expression and their mRNA Targets in a Rat Model of Prediabetes.

机构信息

Department of Pharmacology and Pharmacotherapy, Semmelweis University, H-1089 Budapest, Hungary.

MTA-SE System Pharmacology Research Group, Department of Pharmacology and Pharmacotherapy, Semmelweis University, H-1089 Budapest, Hungary.

出版信息

Int J Mol Sci. 2020 Mar 20;21(6):2128. doi: 10.3390/ijms21062128.

Abstract

Little is known about the mechanism of prediabetes-induced cardiac dysfunction. Therefore, we aimed to explore key molecular changes with transcriptomic and bioinformatics approaches in a prediabetes model showing heart failure with preserved ejection fraction phenotype. To induce prediabetes, Long-Evans rats were fed a high-fat diet for 21 weeks and treated with a single low-dose streptozotocin at week 4. Small RNA-sequencing, in silico microRNA (miRNA)-mRNA target prediction, Gene Ontology analysis, and target validation with qRT-PCR were performed in left ventricle samples. From the miRBase-annotated 752 mature miRNA sequences expression of 356 miRNAs was detectable. We identified two upregulated and three downregulated miRNAs in the prediabetic group. We predicted 445 mRNA targets of the five differentially expressed miRNAs and selected 11 mRNAs targeted by three differentially expressed miRNAs, out of which five mRNAs were selected for validation. Out of these five targets, downregulation of three mRNAs i.e., Juxtaposed with another zinc finger protein 1 (); RAP2C, member of RAS oncogene family (); and Zinc finger with KRAB and SCAN domains 1 () were validated. This is the first demonstration that prediabetes alters cardiac miRNA expression profile. Predicted targets of differentially expressed miRNAs include , , and mRNAs. These transcriptomic changes may contribute to the diastolic dysfunction and may serve as drug targets.

摘要

对于前驱糖尿病引起的心脏功能障碍的机制知之甚少。因此,我们旨在通过转录组学和生物信息学方法在表现出射血分数保留型心力衰竭的前驱糖尿病模型中探索关键的分子变化。为了诱导前驱糖尿病,Long-Evans 大鼠接受高脂肪饮食 21 周,并在第 4 周给予单次低剂量链脲佐菌素治疗。对左心室样本进行小 RNA 测序、计算机 miRNA(miRNA)-mRNA 靶标预测、GO 分析以及 qRT-PCR 靶标验证。从 miRBase 注释的 752 个成熟 miRNA 序列中,可检测到 356 个 miRNA 的表达。我们在前驱糖尿病组中鉴定出两个上调和三个下调的 miRNA。我们预测了五个差异表达 miRNA 的 445 个 mRNA 靶标,并选择了三个差异表达 miRNA 靶向的 11 个 mRNA,其中五个 mRNA 用于验证。在这五个靶标中,下调了三个 mRNA,即毗邻另一个锌指蛋白 1();RAP2C,RAS 癌基因家族成员();和锌指与 KRAB 和 SCAN 结构域 1()得到了验证。这是首次证明前驱糖尿病改变了心脏 miRNA 表达谱。差异表达 miRNA 的预测靶标包括、和 mRNAs。这些转录组变化可能导致舒张功能障碍,并可能作为药物靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0a8/7139428/c8d84cd36cdf/ijms-21-02128-g001.jpg

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