The Microbiome in Bronchial Biopsies from Smokers and Ex-Smokers with Stable COPD - A Metatranscriptomic Approach.

IF 2.2 4区 医学 Q3 RESPIRATORY SYSTEM
B Ditz, J Boekhoudt, N Couto, C A Brandsma, P S Hiemstra, G W Tew, M Neighbors, M A Grimbaldeston, W Timens, H A M Kerstjens, J W A Rossen, V Guryev, M van den Berge, A Faiz
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引用次数: 1

Abstract

Current knowledge about the respiratory microbiome is mainly based on 16S ribosomal RNA gene sequencing. Newer sequencing approaches, such as metatranscriptomics, offer the technical ability to measure the viable microbiome response to environmental conditions such as smoking as well as to explore its functional role by investigating host-microbiome interactions. However, knowledge about its feasibility in respiratory microbiome research, especially in lung biopsies, is still very limited. RNA sequencing was performed in bronchial biopsies from clinically stable smokers (n = 5) and ex-smokers (n = 6) with COPD not using (inhaled) steroids. The Trinity assembler was used to assemble non-human reads in order to allow unbiased taxonomical and microbial transcriptional analyses. Subsequently, host-microbiome interactions were analyzed based on associations with host transcriptomic data. Ultra-low levels of microbial mass (0.009%) were identified in the RNA-seq data. Overall, no differences were identified in microbiome diversity or transcriptional profiles of microbial communities or individual microbes between COPD smokers and ex-smokers in the initial test dataset as well as a larger replication dataset. We identified an upregulated host gene set, related to the simultaneous presence of Bradyrhizobium, Roseomonas, Brevibacterium.spp., which were related to PERK-mediated unfolded protein response (UPR) and expression of the microRNA-155-5p. Our results show that metatranscriptomic profiling in bronchial biopsy samples from stable COPD patients yields ultra-low levels of microbial mass. Further, this study illustrates the potential of using transcriptional profiling of the host and microbiome to gain more insight into their interaction in the airways.

稳定期COPD吸烟者和戒烟者支气管活组织检查中的微生物组——一种转转录组学方法。
目前对呼吸道微生物组的认识主要基于16S核糖体RNA基因测序。较新的测序方法,如亚转录组学,提供了测量微生物组对环境条件(如吸烟)的反应的技术能力,以及通过研究宿主-微生物组的相互作用来探索其功能作用。然而,关于其在呼吸微生物组研究,特别是肺活检中的可行性的知识仍然非常有限。对临床稳定吸烟者(n = 5)和戒烟者(n = 6) COPD患者(不使用(吸入)类固醇)的支气管活检进行RNA测序。三位一体组装器被用来组装非人类读取,以允许无偏分类学和微生物转录分析。随后,基于与宿主转录组数据的关联,分析了宿主-微生物组的相互作用。在RNA-seq数据中鉴定出极低水平的微生物质量(0.009%)。总体而言,在初始测试数据集以及更大的复制数据集中,COPD吸烟者和戒烟者之间的微生物组多样性或微生物群落或个体微生物的转录谱没有发现差异。我们发现了一个上调的宿主基因集,与同时存在的慢生根瘤菌、玫瑰单胞菌、短杆菌有关。这些基因与perk介导的未折叠蛋白反应(UPR)和microRNA-155-5p的表达有关。我们的研究结果表明,来自稳定型COPD患者的支气管活检样本的超转录组分析产生了超低水平的微生物量。此外,这项研究说明了利用宿主和微生物组的转录谱分析来更多地了解它们在气道中的相互作用的潜力。
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来源期刊
CiteScore
4.40
自引率
0.00%
发文量
38
审稿时长
6-12 weeks
期刊介绍: From pathophysiology and cell biology to pharmacology and psychosocial impact, COPD: Journal Of Chronic Obstructive Pulmonary Disease publishes a wide range of original research, reviews, case studies, and conference proceedings to promote advances in the pathophysiology, diagnosis, management, and control of lung and airway disease and inflammation - providing a unique forum for the discussion, design, and evaluation of more efficient and effective strategies in patient care.
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