Spatiotemporal expression and control of haemoglobin in space

Author:

Borg Josef,Loy Conor,Kim JangKeunORCID,Buhagiar Alfred,Chin ChristopherORCID,Damle Namita,De Vlaminck Iwijn,Felice Alex,Liu TammyORCID,Matei IrinaORCID,Meydan CemORCID,Muratani MasafumiORCID,Mzava Omary,Overbey EliahORCID,Ryon Krista A.,Smith Scott M.ORCID,Tierney Braden T.ORCID,Trudel GuyORCID,Zwart Sara R.ORCID,Beheshti AfshinORCID,Mason Christopher E.ORCID,Borg JosephORCID

Abstract

AbstractIt is now widely recognised that the environment in space activates a diverse set of genes involved in regulating fundamental cellular pathways. This includes the activation of genes associated with blood homeostasis and erythropoiesis, with a particular emphasis on those involved in globin chain production. Haemoglobin biology provides an intriguing model for studying space omics, as it has been extensively explored at multiple -omic levels, spanning DNA, RNA, and protein analyses, in both experimental and clinical contexts. In this study, we examined the developmental expression of haemoglobin over time and space using a unique suite of multi-omic datasets available on NASA GeneLab, from the NASA Twins Study, the JAXA CFE study, and the Inspiration4 mission. Our findings reveal significant variations in globin gene expression corresponding to the distinct spatiotemporal characteristics of the collected samples. This study sheds light on the dynamic nature of globin gene regulation in response to the space environment and provides valuable insights into the broader implications of space omics research.

Publisher

Springer Science and Business Media LLC

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