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健康和患病受试者的人类巨核细胞和血小板编码转录组分析。

The Analysis of the Human Megakaryocyte and Platelet Coding Transcriptome in Healthy and Diseased Subjects.

机构信息

Department of Cardiovascular Sciences, Center for Molecular and Vascular Biology, University of Leuven, 3000 Leuven, Belgium.

出版信息

Int J Mol Sci. 2022 Jul 11;23(14):7647. doi: 10.3390/ijms23147647.

Abstract

Platelets are generated and released into the bloodstream from their precursor cells, megakaryocytes that reside in the bone marrow. Though platelets have no nucleus or DNA, they contain a full transcriptome that, during platelet formation, is transported from the megakaryocyte to the platelet. It has been described that transcripts in platelets can be translated into proteins that influence platelet response. The platelet transcriptome is highly dynamic and has been extensively studied using microarrays and, more recently, RNA sequencing (RNA-seq) in relation to diverse conditions (inflammation, obesity, cancer, pathogens and others). In this review, we focus on bulk and single-cell RNA-seq studies that have aimed to characterize the coding transcriptome of healthy megakaryocytes and platelets in humans. It has been noted that bulk RNA-seq has limitations when studying in vitro-generated megakaryocyte cultures that are highly heterogeneous, while single-cell RNA-seq has not yet been applied to platelets due to their very limited RNA content. Next, we illustrate how these methods can be applied in the field of inherited platelet disorders for gene discovery and for unraveling novel disease mechanisms using RNA from platelets and megakaryocytes and rare disease bioinformatics. Next, future perspectives are discussed on how this field of coding transcriptomics can be integrated with other next-generation technologies to decipher unexplained inherited platelet disorders in a multiomics approach.

摘要

血小板由其前体细胞巨核细胞在骨髓中生成并释放到血液中。尽管血小板没有细胞核或 DNA,但它们含有完整的转录组,在血小板形成过程中,转录组从巨核细胞转运到血小板。已经描述了血小板中的转录物可以被翻译成影响血小板反应的蛋白质。血小板转录组非常动态,已经使用微阵列进行了广泛研究,最近还使用 RNA 测序(RNA-seq)研究了与多种条件(炎症、肥胖、癌症、病原体等)相关的转录组。在这篇综述中,我们重点介绍了旨在描述人类健康巨核细胞和血小板编码转录组的批量和单细胞 RNA-seq 研究。已经注意到,批量 RNA-seq 在研究体外生成的高度异质巨核细胞培养物时存在局限性,而单细胞 RNA-seq 由于血小板的 RNA 含量非常有限,尚未应用于血小板。接下来,我们说明了如何将这些方法应用于遗传性血小板疾病领域,以使用来自血小板和巨核细胞的 RNA 以及罕见疾病生物信息学来发现基因和揭示新的疾病机制。接下来,讨论了如何将编码转录组学这一领域与其他下一代技术相结合,以多组学方法解析未解释的遗传性血小板疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/679a/9317744/ebc34841f161/ijms-23-07647-g001.jpg

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