The mechanisms underlying gravity perception in mammalian cells are unknown. We have recently discovered that the transcriptome of cells in the immune system, which is the most affected system during a spaceflight, responds rapidly and broadly to altered gravity. To pinpoint potential underlying mechanisms, we compared gene expression and three-dimensional (3D) chromosomal conformational changes in human Jurkat T cells during the short-term gravitational changes in parabolic flight and suborbital ballistic rocket flight experiments. We found that differential gene expression in gravity-responsive chromosomal regions, but not differentially regulated single genes, are highly conserved between different real altered gravity comparisons. These...
Cellular effects of hypergravity have been described in many studies. We investigated the transcript...
The transcriptome of human immune cells rapidly reacts to altered gravity in a highly dynamic way. W...
Cellular responses to micro- and hypergravity are rapid and complex and appear within the first few ...
The mechanisms underlying gravity perception in mammalian cells are unknown. We have recently discov...
The sensitivity of human immune system cells to gravity changes has been investigated in numerous st...
We investigated the dynamics of immediate and initial gene expression response to different gravitat...
Abstract The gravitational force has been constant throughout Earth’s evolutionary history. Since th...
In the last decades, a plethora of in vitro studies with living human cells contributed a vast amoun...
Cellular processes are influenced in many ways by changes in gravitational force. In previous studie...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Microgravity has been shown to alter global gene expression patterns and protein levels both in cult...
Whereby several types of cultured cells are sensitive to gravity, the immune system belongs to the m...
The human immune system is compromised in microgravity (MG) conditions during an orbital flight and ...
Cellular effects of hypergravity have been described in many studies. We investigated the transcript...
The transcriptome of human immune cells rapidly reacts to altered gravity in a highly dynamic way. W...
Cellular responses to micro- and hypergravity are rapid and complex and appear within the first few ...
The mechanisms underlying gravity perception in mammalian cells are unknown. We have recently discov...
The sensitivity of human immune system cells to gravity changes has been investigated in numerous st...
We investigated the dynamics of immediate and initial gene expression response to different gravitat...
Abstract The gravitational force has been constant throughout Earth’s evolutionary history. Since th...
In the last decades, a plethora of in vitro studies with living human cells contributed a vast amoun...
Cellular processes are influenced in many ways by changes in gravitational force. In previous studie...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Microgravity has been shown to alter global gene expression patterns and protein levels both in cult...
Whereby several types of cultured cells are sensitive to gravity, the immune system belongs to the m...
The human immune system is compromised in microgravity (MG) conditions during an orbital flight and ...
Cellular effects of hypergravity have been described in many studies. We investigated the transcript...
The transcriptome of human immune cells rapidly reacts to altered gravity in a highly dynamic way. W...
Cellular responses to micro- and hypergravity are rapid and complex and appear within the first few ...