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Microgravity-driven remodeling of the proteome reveals insights into molecular mechanisms and signal networks involved in response to the space flight environment

Academic Article
Publication Date:
2016
abstract:
Space is a hostile environment characterized by high vacuum, extreme temperatures, meteoroids, space debris, ionospheric plasma, microgravity and space radiation, which all represent risks for human health. A deep understanding of the biological consequences of exposure to the space environment is required to design efficient countermeasures to minimize their negative impact on human health. Recently, proteomic approaches have received a significant amount of attention in the effort to further study microgravity-induced physiological changes. In this review, we summarize the current knowledge about the effects of microgravity on microorganisms (in particular Cupriavidus metallidurans CH34, Bacillus cereus and Rhodospirillum rubrum S1H), plants (whole plants, organs, and cell cultures), mammalian cells (endothelial cells, bone cells, chondrocytes, muscle cells, thyroid cancer cells, immune system cells) and animals (invertebrates, vertebrates and mammals). Herein, we describe their proteome's response to microgravity, focusing on proteomic discoveries and their future potential applications in space research.
Iris type:
01.01 Articolo in rivista
Keywords:
microgravity; Spaceflight; Proteomic approaches; Adaptive and defence responces
List of contributors:
Ghuge, SANDIP ANNASAHEB; Pascucci, Barbara; Rea, Giuseppina
Authors of the University:
PASCUCCI BARBARA
REA GIUSEPPINA
Handle:
https://iris.cnr.it/handle/20.500.14243/300793
Published in:
JOURNAL OF PROTEOMICS (PRINT)
Journal
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URL

http://www.sciencedirect.com/science/article/pii/S1874391915301780
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