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健康和哮喘受试者支气管上皮细胞中差异细胞外囊泡相关微小RNA谱的侧向定向释放

Side-Directed Release of Differential Extracellular Vesicle-associated microRNA Profiles from Bronchial Epithelial Cells of Healthy and Asthmatic Subjects.

作者信息

Schindler Viktoria E M, Alhamdan Fahd, Preußer Christian, Hintz Lukas, Alashkar Alhamwe Bilal, Nist Andrea, Stiewe Thorsten, Pogge von Strandmann Elke, Potaczek Daniel P, Thölken Clemens, Garn Holger

机构信息

Translational Inflammation Research Division & Core Facility for Single Cell Multiomics, Philipps University of Marburg-Medical Faculty, Member of the German Center for Lung Research (DZL) and the Universities of Giessen and Marburg Lung Center, 35043 Marburg, Germany.

Institute for Tumor Immunology, Philipps University of Marburg-Medical Faculty, 35043 Marburg, Germany.

出版信息

Biomedicines. 2022 Mar 7;10(3):622. doi: 10.3390/biomedicines10030622.

Abstract

Extracellular vesicles (EVs) are released by virtually all cells and may serve as intercellular communication structures by transmitting molecules such as proteins, lipids, and nucleic acids between cells. MicroRNAs (miRNAs) are an abundant class of vesicular RNA playing a pivotal role in regulating intracellular processes. In this work, we aimed to characterize vesicular miRNA profiles released in a side-directed manner by bronchial epithelial cells from healthy and asthmatic subjects using an air-liquid interface cell culture model. EVs were isolated from a culture medium collected from either the basolateral or apical cell side of the epithelial cell cultures and characterized by nano-flow cytometry (NanoFCM) and bead-based flow cytometry. EV-associated RNA profiles were assessed by small RNA sequencing and subsequent bioinformatic analyses. Furthermore, miRNA-associated functions and targets were predicted and miRNA network analyses were performed. EVs were released at higher numbers to the apical cell side of the epithelial cells and were considerably smaller in the apical compared to the basolateral compartment. EVs from both compartments showed a differential tetraspanins surface marker expression. Furthermore, 236 miRNAs were differentially expressed depending on the EV secretion side, regardless of the disease phenotype. On the apical cell side, 32 miRNAs were significantly altered in asthmatic versus healthy conditions, while on the basolateral cell side, 23 differentially expressed miRNAs could be detected. Downstream KEGG pathway analysis predicted mTOR and MAPK signaling pathways as potential downstream targets of apically secreted miRNAs. In contrast, miRNAs specifically detected at the basolateral side were associated with processes of T and B cell receptor signaling. The study proves a compartmentalized packaging of EVs by bronchial epithelial cells supposedly associated with site-specific functions of cargo miRNAs, which are considerably affected by disease conditions such as asthma.

摘要

细胞外囊泡(EVs)几乎由所有细胞释放,并可通过在细胞间传递蛋白质、脂质和核酸等分子,充当细胞间通讯结构。微小RNA(miRNAs)是一类丰富的囊泡RNA,在调节细胞内过程中起关键作用。在本研究中,我们旨在利用气液界面细胞培养模型,对健康和哮喘受试者支气管上皮细胞以侧方定向方式释放的囊泡miRNA谱进行表征。从上皮细胞培养物的基底外侧或顶端细胞侧收集的培养基中分离出EVs,并通过纳米流式细胞术(NanoFCM)和基于微珠的流式细胞术进行表征。通过小RNA测序和后续生物信息学分析评估与EV相关的RNA谱。此外,预测了与miRNA相关的功能和靶标,并进行了miRNA网络分析。EVs向上皮细胞的顶端细胞侧释放的数量更多,与基底外侧区相比,顶端的EVs明显更小。来自两个区室的EVs显示出不同的四跨膜蛋白表面标志物表达。此外,无论疾病表型如何,有236种miRNAs根据EV分泌侧的不同而差异表达。在顶端细胞侧,哮喘患者与健康患者相比,有32种miRNAs发生了显著变化,而在基底外侧细胞侧,可检测到23种差异表达的miRNAs。下游KEGG通路分析预测mTOR和MAPK信号通路是顶端分泌的miRNAs的潜在下游靶标。相比之下,在基底外侧侧特异性检测到的miRNAs与T和B细胞受体信号传导过程相关。该研究证明支气管上皮细胞对EVs进行了分区包装,这可能与货物miRNAs的位点特异性功能有关,而这些功能会受到哮喘等疾病状况的显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/118d/8945885/8c6aec1ade9c/biomedicines-10-00622-g001.jpg

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