Current knowledge about the impact of microgravity on the proteome.
Sebastian M StrauchDaniela GrimmThomas Juhl CorydonMarcus KrügerJohann BauerMichael LebertPetra WiseManfred InfangerPeter RichterPublished in: Expert review of proteomics (2018)
Introduction: Microgravity (µg) is an extreme stressor for plants, animals, and humans and influences biological systems. Humans in space experience various health problems during and after a long-term stay in orbit. Various studies have demonstrated structural alterations and molecular biological changes within the cellular milieu of plants, bacteria, microorganisms, animals, and cells. These data were obtained by proteomics investigations applied in gravitational biology to elucidate changes in the proteome occurring when cells or organisms were exposed to real µg (r-µg) and simulated µg (s-µg). Areas covered: In this review, we summarize the current knowledge about the impact of µg on the proteome in plants, animals, and human cells. The literature suggests that µg impacts the proteome and thus various biological processes such as angiogenesis, apoptosis, cell adhesion, cytoskeleton, extracellular matrix proteins, migration, proliferation, stress response, and signal transduction. The changes in cellular function depend on the respective cell type. Expert commentary: This data is important for the topics of gravitational biology, tissue engineering, cancer research, and translational regenerative medicine. Moreover, it may provide new ideas for countermeasures to protect the health of future space travelers.
Keyphrases
- cell cycle arrest
- healthcare
- induced apoptosis
- extracellular matrix
- mental health
- tissue engineering
- cell adhesion
- public health
- cell death
- endoplasmic reticulum stress
- electronic health record
- signaling pathway
- oxidative stress
- systematic review
- mass spectrometry
- pi k akt
- big data
- health information
- young adults
- risk assessment
- artificial intelligence
- current status
- cell proliferation
- health promotion
- case control