模拟微重力通过下调LMO2和EZH2,改变了Kupffer细胞早期基因表达谱,抑制了Kupffer细胞的增殖

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Jun Ge , Yuan Yue , Hong-Yun Nie , Kai-Ge Liu , Hao Li , Hai-Guan Lin , Tao Zhang , Hong-Feng Yan , Hong-Wei Sun , Jian-Wu Yang , Jin-Lian Zhou , Yan Cui
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引用次数: 0

摘要

当人类进入太空旅行时,微重力是需要克服的主要挑战。我们的研究提供了Kupffer细胞对模拟微重力(SMG)敏感的证据,文献中未见类似的研究报道。利用转录组测序技术发现,在SMG作用3天后,KCs中631个基因上调,801个基因下调。氧化石墨烯分析表明,暴露于SMG 3天后,KCs的增殖受到影响。CCK-8实验证实,SMG环境下KCs的增殖在第3天受到抑制。此外,我们确定了8个影响KCs增殖的关键基因,并预测了调节8个关键基因的2个转录因子(TFs)。值得注意的是,我们发现微重力可以影响LMO2和EZH2的表达,使Racgap1、Ccna2、Nek2、Aurka、Plk1、Haus4、Cdc20、Bub1b的转录减少,从而导致KCs的增殖减少。这些发现提示,微重力条件下抑制KCs的增殖可能影响肝脏稳态,LMO2和EZH2可能是未来空间医学实践中KCs紊乱管理的靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulated microgravity altered the gene expression profiles and inhibited the proliferation of Kupffer cells in the early phase by downregulating LMO2 and EZH2

Microgravity is a primary challenge that need to overcome, when human travel to space. Our study provided evidence that Kupffer cells (KCs) are sensitive to simulated microgravity (SMG), and no similar research report has been found in the literature. Using transcriptome sequencing technology, it was showed that 631 genes were upregulated and 801 genes were downregulated in KCs after treatment under SMG for 3 days. The GO analysis indicated that the proliferation of KCs was affected when exposed to SMG for 3 days. CCK-8 assay confirmed that the proliferation of KCs was inhibited in the third day under the environment of SMG. Furthermore, we identified 8 key genes that affect the proliferation of KCs and predicted 2 transcription factors (TFs) that regulate the 8 key genes. Significantly, we found that microgravity could affect the expression of LMO2 and EZH2 to reduce the transcription of Racgap1, Ccna2, Nek2, Aurka, Plk1, Haus4, Cdc20, Bub1b, which resulting in the reduction in KCs proliferation. These finding suggested that the inhibition of KCs proliferation under microgravity may influence the homeostasis of liver, and LMO2 and EZH2 can be the targets in management of KCs’ disturbance in the future practice of space medicine.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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