4.6 Article

Microgravity modifies protein kinase C isoform translocation in the human monocytic cell line U937 and human peripheral blood T-cells

Journal

JOURNAL OF CELLULAR BIOCHEMISTRY
Volume 87, Issue 1, Pages 39-50

Publisher

WILEY-LISS
DOI: 10.1002/jcb.10273

Keywords

monocyte; microgravity; signal transduction; protein kinase C

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Individual protein kinase C (PKC) isoforms fulfil distinct roles in the regulation of the commitment to differentiation, cell cycle arrest, and apoptosis in both monocytes and T-cells. The human monocyte like cell line U937 and T-cells were exposed to microgravity, during spaceflight and the translocation (a critical step in PKC signaling) of individual isoforms to cell particulate fraction examined, PKC activating phorbol esters induced a rapid translocation of several PKC isoforms to the particulate fraction of U937 monocytes under terrestrial gravity (1g) conditions in the laboratory. In microgravity, the trans location of PKC betaII, delta, and epsilon in response to phorbol esters was reduced in microgravity compared to 1g, but was enhanced in weak hypergravity (1.4g). All isoforms showed a net increase in particulate PKC following phorbol ester stimulation, except PKC delta which showed a net decrease in microgravity. In T-cells, phorbol ester induced translocation of PKC delta was reduced in microgravity, compared to 1g, while PKC betaII translocation was not significantly different at the two g-levels. These data show that microgravity differentially alters the translocation of individual PKC isoforms in monocytes and T-cells, thus providing a partial explanation for the modifications previously observed in the activation of these cell types under microgravity.

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