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与细胞外囊泡相比,全人脑脊液和血清的小长 RNA 转录组在表达模式和对生物学过程的影响方面存在显著差异。

Small and long RNA transcriptome of whole human cerebrospinal fluid and serum as compared to their extracellular vesicle fractions reveal profound differences in expression patterns and impacts on biological processes.

机构信息

Department of Neurology, University Medical Center Göttingen, Robert-Koch-Straße 40, 37075, Göttingen, Germany.

Evotec International GmbH, Marie-Curie-Str. 7, 37079, Göttingen, Germany.

出版信息

J Transl Med. 2022 Sep 8;20(1):413. doi: 10.1186/s12967-022-03612-3.

Abstract

BACKGROUND

Next generation sequencing (NGS) of human specimen is expected to improve prognosis and diagnosis of human diseases, but its sensitivity urges for well-defined sampling and standardized protocols in order to avoid error-prone conclusions.

METHODS

In this study, large volumes of pooled human cerebrospinal fluid (CSF) were used to prepare RNA from human CSF-derived extracellular vesicles (EV) and from whole CSF, as well as from whole human serum and serum-derived EV. In all four fractions small and long coding and non-coding RNA expression was analyzed with NGS and transcriptome analyses.

RESULTS

We show, that the source of sampling has a large impact on the acquired NGS pattern, and differences between small RNA fractions are more distinct than differences between long RNA fractions. The highest percentual discrepancy between small RNA fractions and the second highest difference between long RNA fractions is seen in the comparison of CSF-derived EV and whole CSF. Differences between miR (microRNA) and mRNA fractions of EV and the respective whole body fluid have the potential to affect different cellular and biological processes. I.e. a comparison of miR in both CSF fractions reveals that miR from EV target four transcripts sets involved in neurobiological processes, whereas eight others, also involved in neurobiological processes are targeted by miR found in whole CSF only. Likewise, three mRNAs sets derived from CSF-derived EV are associated with neurobiological and six sets with mitochondrial metabolism, whereas no such mRNA transcript sets are found in the whole CSF fraction. We show that trace amounts of blood-derived contaminations of CSF can bias RNA-based CSF diagnostics.

CONCLUSIONS

This study shows that the composition of small and long RNA differ significantly between whole body fluid and its respective EV fraction and thus can affect different cellular and molecular functions. Trace amounts of blood-derived contaminations of CSF can bias CSF analysis. This has to be considered for a meaningful RNA-based diagnostics. Our data imply a transport of EV from serum to CSF across the blood-brain barrier.

摘要

背景

下一代测序(NGS)对人类标本的测序有望改善人类疾病的预后和诊断,但为了避免得出易错的结论,其灵敏度需要明确的采样和标准化方案。

方法

在这项研究中,使用大量混合的人脑脊液(CSF)来从人 CSF 衍生的细胞外囊泡(EV)和整个 CSF 中制备 RNA,以及从整个人血清和血清衍生的 EV 中制备 RNA。在所有四个部分中,均使用 NGS 和转录组分析来分析小和长编码及非编码 RNA 的表达。

结果

我们表明,采样源对获得的 NGS 模式有很大影响,并且小 RNA 部分之间的差异比长 RNA 部分之间的差异更为明显。在 CSF 衍生的 EV 和整个 CSF 之间的比较中,小 RNA 部分之间的最高百分比差异和长 RNA 部分之间的第二高差异。EV 和相应的全身流体中的 miR(microRNA)和 mRNA 部分之间的差异有可能影响不同的细胞和生物学过程。例如,对两种 CSF 部分中的 miR 进行比较表明,来自 EV 的 miR 靶向涉及神经生物学过程的四个转录物集,而仅在整个 CSF 中发现的 miR 靶向另外八个也涉及神经生物学过程的转录物集。同样,来自 CSF 衍生的 EV 的三个 mRNAs 集与神经生物学和六个与线粒体代谢相关,而在整个 CSF 部分中没有发现这样的 mRNAs 转录物集。我们表明,CSF 中痕量的血液衍生污染可以偏倚基于 RNA 的 CSF 诊断。

结论

本研究表明,整个体液与其各自的 EV 部分之间的小 RNA 和长 RNA 的组成存在显著差异,因此可以影响不同的细胞和分子功能。CSF 中痕量的血液衍生污染可以偏倚 CSF 分析。这对于有意义的基于 RNA 的诊断需要加以考虑。我们的数据表明 EV 从血清到 CSF 的跨血脑屏障转运。

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