MicroRNA-411及其5'-IsomiR具有不同的靶点和功能,在缺血血管中受到不同的调控。

Reginald V C T van der Kwast, Tamar Woudenberg, Paul H A Quax, A Yaël Nossent
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引用次数: 0

摘要

MicroRNAs是基因表达的转录后调控因子。由于microRNAs可以同时靶向许多基因,因此microRNAs可以调控复杂的多因子过程,包括缺血后新生血管,这是心血管疾病的主要恢复途径。microRNA通过与其种子序列(即microRNA 5'端2-8个核苷酸)的完全互补结合来选择它们的靶mrna。成熟microRNA的确切序列,以及它的5‘和3’端,是由microRNA前体Drosha/DGCR8和Dicer的两个连续切割步骤决定的。当这些切割步骤导致5‘末端的核苷酸开关,形成所谓的5’-isomiR时,这导致成熟microRNA种子序列的变化。5'-异构体在心血管疾病中的作用尚不清楚。在这里,我们表征了miR-411的5'-isomiR (ISO-miR-411)的表达和功能。ISO-miR-411在人原代血管细胞中大量表达。ISO-miR-411与WT-miR-411具有不同的“靶组”,只有少量重叠。在细胞和小鼠缺血模型中,ISO-miR-411/WT-miR-411比例在急性缺血下下调,但在慢性缺血的人血管中却上调。ISO-miR-411会对血管细胞迁移产生负面影响,而WT-miR-411则不会。我们的数据表明,isomiR的形成是一个功能途径,在缺血期间被积极调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MicroRNA-411 and Its 5'-IsomiR Have Distinct Targets and Functions and Are Differentially Regulated in the Vasculature under Ischemia.

MicroRNAs are posttranscriptional regulators of gene expression. As microRNAs can target many genes simultaneously, microRNAs can regulate complex multifactorial processes, including post-ischemic neovascularization, a major recovery pathway in cardiovascular disease. MicroRNAs select their target mRNAs via full complementary binding with their seed sequence, i.e., nucleotides 2-8 from the 5' end of a microRNA. The exact sequence of a mature microRNA, and thus of its 5' and 3' ends, is determined by two sequential cleavage steps of microRNA precursors, Drosha/DGCR8 and Dicer. When these cleavage steps result in nucleotide switches at the 5' end, forming a so-called 5'-isomiR, this results in a shift in the mature microRNA's seed sequence. The role of 5'-isomiRs in cardiovascular diseases is still unknown. Here, we characterize the expression and function of the 5'-isomiR of miR-411 (ISO-miR-411). ISO-miR-411 is abundantly expressed in human primary vascular cells. ISO-miR-411 has a different "targetome" from WT-miR-411, with only minor overlap. The ISO-miR-411/WT-miR-411 ratio is downregulated under acute ischemia, both in cells and a murine ischemia model, but is upregulated instead in chronically ischemic human blood vessels. ISO-miR-411 negatively influences vascular cell migration, whereas WT-miR-411 does not. Our data demonstrate that isomiR formation is a functional pathway that is actively regulated during ischemia.

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