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首页> 外文期刊>NPJ Microgravity >Microgravity elicits reproducible alterations in cytoskeletal and metabolic gene and protein expression in space-flown Caenorhabditis elegans
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Microgravity elicits reproducible alterations in cytoskeletal and metabolic gene and protein expression in space-flown Caenorhabditis elegans

机译:微重力引起空腹秀丽隐杆线虫细胞骨架和代谢基因及蛋白质表达的可再现改变

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Although muscle atrophy is a serious problem during spaceflight, little is known about the sequence of molecular events leading to atrophy in response to microgravity. We carried out a spaceflight experiment using Caenorhabditis elegans onboard the Japanese Experiment Module of the International Space Station. Worms were synchronously cultured in liquid media with bacterial food for 4 days under microgravity or on a 1-G centrifuge. Worms were visually observed for health and movement and then frozen. Upon return, we analyzed global gene and protein expression using DNA microarrays and mass spectrometry. Body length and fat accumulation were also analyzed. We found that in worms grown from the L1 larval stage to adulthood under microgravity, both gene and protein expression levels for muscular thick filaments, cytoskeletal elements, and mitochondrial metabolic enzymes decreased relative to parallel cultures on the 1-G centrifuge (95% confidence interval ( P ?0.05)). In addition, altered movement and decreased body length and fat accumulation were observed in the microgravity-cultured worms relative to the 1-G cultured worms. These results suggest protein expression changes that may account for the progressive muscular atrophy observed in astronauts.
机译:尽管在太空飞行中肌肉萎缩是一个严重的问题,但是对于导致微重力反应导致萎缩的分子事件的序列知之甚少。我们在国际空间站的日本实验舱上使用秀丽隐杆线虫进行了太空飞行实验。在微重力下或在1-G离心机上,将蠕虫在带有细菌食物的液体培养基中同步培养4天。目视观察蠕虫的健康和活动,然后将其冷冻。返回后,我们使用DNA微阵列和质谱分析了全球基因和蛋白质表达。还分析了体长和脂肪堆积。我们发现,在微重力作用下从L1幼虫阶段生长到成虫的蠕虫中,与1-G离心机上的平行培养相比,肌肉粗细丝,细胞骨架成分和线粒体代谢酶的基因和蛋白质表达水平均下降(95%置信区间(P <0.05))。此外,相对于1-G养殖蠕虫,在微重力养殖蠕虫中观察到运动发生变化,体长和脂肪堆积减少。这些结果表明蛋白质表达的变化可能解释了宇航员中观察到的进行性肌肉萎缩。

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