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Rapid alterations of cell cycle control proteins in human T lymphocytes in microgravity

机译:微重力下人T淋巴细胞中细胞周期调控蛋白的快速变化

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摘要

In our study we aimed to identify rapidly reacting gravity-responsive mechanisms in mammalian cells in order to understand if and how altered gravity is translated into a cellular response. In a combination of experiments using "functional weightlessness" provided by 2D-clinostats and real microgravity provided by several parabolic flight campaigns and compared to in-flight-1g-controls, we identified rapid gravity-responsive reactions inside the cell cycle regulatory machinery of human T lymphocytes. In response to 2D clinorotation, we detected an enhanced expression of p21 Waf1/Cip1 protein within minutes, less cdc25C protein expression and enhanced Ser147-phosphorylation of cyclinB1 after CD3/CD28 stimulation. Additionally, during 2D clinorotation, Tyr-15-phosphorylation occurred later and was shorter than in the 1 g controls. In CD3/CD28-stimulated primary human T cells, mRNA expression of the cell cycle arrest protein p21 increased 4.1-fold after 20s real microgravity in primary CD4+ T cells and 2.9-fold in Jurkat T cells, compared to 1 g in-flight controls after CD3/CD28 stimulation. The histone acetyltransferase (HAT) inhibitor curcumin was able to abrogate microgravity-induced p21 mRNA expression, whereas expression was enhanced by a histone deacetylase (HDAC) inhibitor. Therefore, we suppose that cell cycle progression in human T lymphocytes requires Earth gravity and that the disturbed expression of cell cycle regulatory proteins could contribute to the breakdown of the human immune system in space.
机译:在我们的研究中,我们旨在确定哺乳动物细胞中快速反应的重力反应机制,以了解是否以及如何将改变的重力转化为细胞反应。在结合使用2D倾斜仪提供的“功能失重”和几次抛物线飞行运动提供的真实微重力的实验中,并与飞行中的1g控件进行比较,我们确定了人类细胞周期调控机制内部的快速重力响应反应T淋巴细胞。在响应二维旋转时,我们在几分钟内检测到p21 Waf1 / Cip1 蛋白表达增强,而cdc25C蛋白表达降低,而CD3 / CD28刺激后cyclinB1的Ser147磷酸化增强。此外,在2D倾斜旋转过程中,Tyr-15磷酸化发生得较晚,并且比1 g对照短。在CD3 / CD28刺激的原代人T细胞中,细胞周期阻滞蛋白p21的mRNA表达在20s实际微重力作用下在原代CD4 + T细胞中增加了4.1倍,在Jurkat T细胞中增加了2.9倍,与CD3 / CD28刺激后的1 g飞行中对照相比。组蛋白乙酰转移酶(HAT)抑制剂姜黄素能够消除微重力诱导的p21 mRNA表达,而组蛋白脱乙酰基酶(HDAC)抑制剂可增强表达。因此,我们认为人类T淋巴细胞的细胞周期进程需要地球重力,而细胞周期调节蛋白的表达受干扰可能会导致人类免疫系统在太空中的崩溃。

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