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Book Title: NASA Technical Reports Server (NTRS) : Modeled
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Book Category: PHOSPHORYLATION
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Language: english
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Post Date: 2025-04-04 09:28:27
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PDF Size: 8.92 MB
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Book Pages: 26
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NASA Technical Reports Server (NTRS) : Modeled
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Description of the Book:
In long-term space travel, the crew is exposed to microgravity and radiation that invoke potential hazards to the immune system. T cell activation is a critical step in the immune response. Receptor-mediated signaling is inhibited both in microgravity and modeled microgravity (MMG) as reflected in diminished DNA synthess in peripheral blood lymphocytes and their locomotion through gelled type 1 collagen. Direct activation of Protein Kinase C (PKC) bypassing cell surface events using the phorbol ester PMA rescues MMG-inhibited lymphocyte activation and locomotion, whereas calcium ionophore ionomycin had no rescue effect. Thus calcium-independent PKC isoforms may be affected in MMG-induced locomotion inhibition and rescue. Both calcium-dependent isoforms and calcium-independent PKC isoforms were investigated to assess their expression in lymphocytes in 19 and MMG-culture. Human lymphocytes were cultured and harvested at 24, 48, 72 and 96 hours and serial samples assessed for locomotion using type I collagen and expression of PKC isoforms.
Expression of PKC-alpha, -delta and -epsilon was assessed by RT-PCR, flow cytometry and immunoblotting. Results indicated that PKC isoforms delta and epsilon were down-regulated by more than 50% at the transcriptional and translational levels in MMG-cultured lymphocytes compared with 19 controls. Events upstream of PKC such as phosphorylation of Phospholipase C(gamma) (PLC-gamma) in MMG, revealed accumulation of inactive enzyme. Depressed Ca++ -independent PKC isoforms may be a consequence of an upstream lesion in the signal transduction pathway. The differential response among calcium-dependent and calcium-independent isoforms may actually result from MMG intrusion events earlier than, but after ligand-receptor interaction. Keywords: Signal transduction, locomotion, immunity
- Creator/s: NASA Technical Reports Server (NTRS
- Date: 1/1/2003
- Year: 2003
- Book Topics/Themes: NASA Technical Reports Server (NTRS), LYMPHOCYTES, MICROGRAVITY, PHOSPHORYLATION, BLOOD, ACTIVATION (BIOLOGY), ENZYME ACTIVITY, PROTEINS, LOCOMOTION, IMMUNITY, PHYSIOLOGICAL RESPONSES, IMMUNOLOGY, CALCIUM, HAZARDS, ESTERS, RESCUE OPERATIONS, Sundaresan, A., Risin, D., Pellis, N. R
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