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人 Jurkat T 淋巴细胞对近生理超重力环境和常规细胞培养方案中常见的一种环境的转录反应。

Transcriptional Response in Human Jurkat T Lymphocytes to a near Physiological Hypergravity Environment and to One Common in Routine Cell Culture Protocols.

机构信息

Institute of Anatomy, Faculty of Medicine, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland.

Department of Machine Design, Engineering Design and Product Development, Institute of Mechanical Engineering, Otto-von-Guericke-University Magdeburg, Universitätsplatz 2, 39106 Magdeburg, Germany.

出版信息

Int J Mol Sci. 2023 Jan 10;24(2):1351. doi: 10.3390/ijms24021351.

Abstract

Cellular effects of hypergravity have been described in many studies. We investigated the transcriptional dynamics in Jurkat T cells between 20 s and 60 min of 9 g hypergravity and characterized a highly dynamic biphasic time course of gene expression response with a transition point between rapid adaptation and long-term response at approximately 7 min. Upregulated genes were shifted towards the center of the nuclei, whereby downregulated genes were shifted towards the periphery. Upregulated gene expression was mostly located on chromosomes 16-22. Protein-coding transcripts formed the majority with more than 90% of all differentially expressed genes and followed a continuous trend of downregulation, whereas retained introns demonstrated a biphasic time-course. The gene expression pattern of hypergravity response was not comparable with other stress factors such as oxidative stress, heat shock or inflammation. Furthermore, we tested a routine centrifugation protocol that is widely used to harvest cells for subsequent RNA analysis and detected a huge impact on the transcriptome compared to non-centrifuged samples, which did not return to baseline within 15 min. Thus, we recommend carefully studying the response of any cell types used for any experiments regarding the hypergravity time and levels applied during cell culture procedures and analysis.

摘要

已有多项研究描述了超重力对细胞的影响。我们研究了 Jurkat T 细胞在 9 g 超重力下 20 秒至 60 分钟之间的转录动态,并对基因表达反应的高度动态双相时程进行了特征描述,其中快速适应和长期反应的转折点大约在 7 分钟左右。上调的基因向核中心移动,而下调的基因则向核边缘移动。上调的基因表达主要位于 16-22 号染色体上。蛋白质编码转录本占大多数,超过 90%的差异表达基因呈连续下调趋势,而保留的内含子则表现出双相时程。超重力反应的基因表达模式与其他应激因素(如氧化应激、热休克或炎症)无法相比。此外,我们测试了一种广泛用于收获细胞以进行后续 RNA 分析的常规离心方案,与未经离心的样本相比,该方案对转录组有巨大影响,且在 15 分钟内未恢复到基线水平。因此,我们建议在细胞培养过程和分析中,仔细研究任何用于实验的细胞类型对超重力时间和水平的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d312/9863927/c03e73aa2145/ijms-24-01351-g001.jpg

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