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人血液中的细胞外 microRNAs 与 miRISC 复合物有关,该复合物可与抗 AGO2 抗体结合,并能与靶标模拟寡核苷酸结合。

Extracellular microRNAs in human circulation are associated with miRISC complexes that are accessible to anti-AGO2 antibody and can bind target mimic oligonucleotides.

机构信息

Department of Molecular Medicine, University of Massachusetts Medical School, Worcester, MA 01605.

Department of Biological Chemistry, Geffen School of Medicine, University of California, Los Angeles, CA 90095.

出版信息

Proc Natl Acad Sci U S A. 2020 Sep 29;117(39):24213-24223. doi: 10.1073/pnas.2008323117. Epub 2020 Sep 14.

Abstract

MicroRNAs (miRNAs) function cell-intrinsically to regulate gene expression by base-pairing to complementary mRNA targets while in association with Argonaute, the effector protein of the miRNA-mediated silencing complex (miRISC). A relatively dilute population of miRNAs can be found extracellularly in body fluids such as human blood plasma and cerebrospinal fluid (CSF). The remarkable stability of circulating miRNAs in such harsh extracellular environments can be attributed to their association with protective macromolecular complexes, including extracellular vesicles (EVs), proteins such as Argonaut 2 (AGO2), or high-density lipoproteins. The precise origins and the potential biological significance of various forms of miRNA-containing extracellular complexes are poorly understood. It is also not known whether extracellular miRNAs in their native state may retain the capacity for miRISC-mediated target RNA binding. To explore the potential functionality of circulating extracellular miRNAs, we comprehensively investigated the association between circulating miRNAs and the miRISC Argonaute AGO2. Using AGO2 immunoprecipitation (IP) followed by small-RNA sequencing, we find that miRNAs in circulation are primarily associated with antibody-accessible miRISC/AGO2 complexes. Moreover, we show that circulating miRNAs can base-pair with a target mimic in a seed-based manner, and that the target-bound AGO2 can be recovered from blood plasma in an ∼1:1 ratio with the respective miRNA. Our findings suggest that miRNAs in circulation are largely contained in functional miRISC/AGO2 complexes under normal physiological conditions. However, we find that, in human CSF, the assortment of certain extracellular miRNAs into free miRISC/AGO2 complexes can be affected by pathological conditions such as amyotrophic lateral sclerosis.

摘要

微小 RNA(miRNAs)通过与 Argonaute 结合,形成 miRNA 介导的沉默复合物(miRISC)的效应蛋白,在细胞内发挥作用来调节基因表达。相对较少的 miRNA 可以在人体血液血浆和脑脊液(CSF)等体液中作为细胞外体存在。循环 miRNA 在如此恶劣的细胞外环境中具有惊人的稳定性,可以归因于它们与保护性大分子复合物的结合,包括细胞外囊泡(EVs)、Argonaut 2(AGO2)等蛋白质或高密度脂蛋白。各种形式的 miRNA 包含细胞外复合物的精确起源和潜在生物学意义尚不清楚。也不知道它们是否以天然状态存在的细胞外 miRNA 是否可能保留 miRISC 介导的靶 RNA 结合能力。为了探索循环细胞外 miRNA 的潜在功能,我们全面研究了循环 miRNA 与 miRISC Argonaute AGO2 之间的关联。通过 AGO2 免疫沉淀(IP)结合小 RNA 测序,我们发现循环中的 miRNAs 主要与抗体可及的 miRISC/AGO2 复合物结合。此外,我们表明,循环 miRNA 可以以种子为基础与靶标模拟物配对,并且靶标结合的 AGO2 可以与相应的 miRNA 以 1:1 的比例从血浆中回收。我们的发现表明,在正常生理条件下,循环中的 miRNA 主要包含在功能性 miRISC/AGO2 复合物中。然而,我们发现,在人 CSF 中,某些细胞外 miRNA 进入游离 miRISC/AGO2 复合物的组合可能会受到肌萎缩侧索硬化等病理条件的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/935b/7533700/401e7a2eb417/pnas.2008323117fig01.jpg

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