Advanced Medical Research Center, Yokohama City University, Yokohama, Japan.
Department of Physiology and Regenerative Medicine, Kindai University Faculty of Medicine, Osaka, Japan.
Proteomics. 2024 May;24(9):e2300214. doi: 10.1002/pmic.202300214. Epub 2024 Mar 12.
Physical inactivity associated with gravity unloading, such as microgravity during spaceflight and hindlimb unloading (HU), can cause various physiological changes. In this study, we attempted to identify serum proteins whose levels fluctuated in response to gravity unloading. First, we quantitatively assessed changes in the serum proteome profiles of spaceflight mice using mass spectrometry with data-independent acquisition. The serum levels of several proteins involved in the responses to estrogen and glucocorticoid, blood vessel maturation, osteoblast differentiation, and ossification were changed by microgravity exposure. Furthermore, a collective evaluation of serum proteomic data from spaceflight and HU mice identified 30 serum proteins, including Mmp2, Igfbp2, Tnc, Cdh5, and Pmel, whose levels varied to a similar extent in both gravity unloading models. These changes in serum levels could be involved in the physiological changes induced by gravity unloading. A collective evaluation of serum, femur, and soleus muscle proteome data of spaceflight mice also showed 24 serum proteins, including Igfbp5, Igfbp3, and Postn, whose levels could be associated with biological changes induced by microgravity. This study examined serum proteome profiles in response to gravity unloading, and may help deepen our understanding of microgravity adaptation mechanisms during prolonged spaceflight missions.
与重力卸载相关的身体不活动,如太空飞行期间的微重力和后肢卸载(HU),会导致各种生理变化。在这项研究中,我们试图确定对重力卸载有反应而波动的血清蛋白。首先,我们使用具有数据独立采集功能的质谱法定量评估了飞行小鼠的血清蛋白质组图谱的变化。暴露于微重力会改变几种参与雌激素和糖皮质激素反应、血管成熟、成骨细胞分化和骨化的蛋白质的血清水平。此外,对飞行和 HU 小鼠的血清蛋白质组数据进行综合评估,鉴定出 30 种血清蛋白,包括 Mmp2、Igfbp2、Tnc、Cdh5 和 Pmel,它们在两种重力卸载模型中的变化程度相似。这些血清水平的变化可能与重力卸载引起的生理变化有关。对飞行小鼠的血清、股骨和比目鱼肌蛋白质组数据的综合评估还显示,24 种血清蛋白,包括 Igfbp5、Igfbp3 和 Postn,其水平可能与微重力引起的生物学变化有关。本研究检查了对重力卸载的血清蛋白质组图谱的反应,可能有助于加深我们对长期太空飞行任务期间微重力适应机制的理解。