a Department of Physiology, Anatomy and Genetics , University of Oxford , Oxford , UK.
b VIB-UGent Center for Inflammation Research, Department of Biomedical Molecular Biology, Ghent University , Ghent , Belgium.
RNA Biol. 2019 May;16(5):696-706. doi: 10.1080/15476286.2019.1582956. Epub 2019 Mar 5.
Multiple studies have described extracellular microRNAs (ex-miRNAs) as being remarkably stable despite the hostile extracellular environment, when stored at 4ºC or lower. Here we show that many ex-miRNAs are rapidly degraded when incubated at 37ºC in the presence of serum (thereby simulating physiologically relevant conditions). Stability varied widely between miRNAs, with half-lives ranging from ~1.5 hours to more than 13 hours. Notably, ex-miRNA half-lives calculated in two different biofluids (murine serum and C2C12 mouse myotube conditioned medium) were highly similar, suggesting that intrinsic sequence properties are a determining factor in miRNA stability. By contrast, ex-miRNAs associated with extracellular vesicles (isolated by size exclusion chromatography) were highly stable. The release of ex-miRNAs from C2C12 myotubes was measured over time, and mathematical modelling revealed miRNA-specific release kinetics. While some ex-miRNAs reached the steady state in cell culture medium within 24 hours, the extracellular level of miR-16 did not reach equilibrium, even after 3 days in culture. These findings are indicative of miRNA-specific release and degradation kinetics with implications for the utility of ex-miRNAs as biomarkers, and for the potential of ex-miRNAs to transfer gene regulatory information between cells.
多项研究表明,在 4°C 或更低温度下储存时,尽管处于恶劣的细胞外环境中,细胞外 microRNAs (ex-miRNAs) 仍具有惊人的稳定性。在这里,我们表明,当在存在血清的情况下于 37°C 孵育时(从而模拟生理相关条件),许多 ex-miRNAs 会迅速降解。miRNAs 之间的稳定性差异很大,半衰期从 ~1.5 小时到超过 13 小时不等。值得注意的是,在两种不同的生物流体(鼠血清和 C2C12 鼠肌管条件培养基)中计算的 ex-miRNA 半衰期非常相似,这表明内在的序列特性是 miRNA 稳定性的决定因素。相比之下,与细胞外囊泡(通过大小排阻色谱法分离)相关的 ex-miRNAs 高度稳定。测量了 C2C12 肌管中 ex-miRNA 的释放随时间的变化,数学模型揭示了 miRNA 特异性的释放动力学。虽然一些 ex-miRNAs 在细胞培养基中 24 小时内达到稳定状态,但 miR-16 的细胞外水平甚至在培养 3 天后仍未达到平衡。这些发现表明存在 miRNA 特异性的释放和降解动力学,这对 ex-miRNAs 作为生物标志物的效用以及 ex-miRNAs 在细胞间传递基因调控信息的潜力具有重要意义。