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| Titre: | Cell Signaling : Courses Intended for Master1 Students apllied biochemistry |
| Auteur(s): | GASMI, Lakhdar |
| Mots-clés: | Cell Signaling |
| Date de publication: | 2026 |
| Editeur: | Faculty of Natural and Life Sciences. Setif 1 university – Ferhat ABBAS |
| Résumé: | The course Cell Signalling is designed for first-year Master’s students in Applied Biochemistry
and provides a comprehensive understanding of the molecular mechanisms that enable cells to
communicate with their environment. Cellular communication is essential for the coordination of
physiological processes in multicellular organisms and allows cells to perceive, integrate, and
respond appropriately to external and internal stimuli.
This communication is mediated by a wide variety of signalling molecules, including hormones,
neurotransmitters, cytokines, growth factors, and components of the extracellular matrix. These
signalling molecules interact with specific receptors located either on the cell surface or within the
cell. The binding of a signalling molecule to its receptor initiates a cascade of intracellular events
collectively known as signal transduction. Through these mechanisms, extracellular information
is converted into specific cellular responses such as gene expression, metabolism regulation, cell
proliferation, differentiation, migration, secretion, and apoptosis.
The course begins with the fundamental concepts of receptor biology and receptor–ligand
interactions, emphasizing receptor specificity, affinity, and signalling mechanisms. It then
explores G protein-coupled receptors (GPCRs), one of the largest receptor families involved in
cellular communication, and examines the role of heterotrimeric G proteins in signal transmission.
Particular attention is given to the major effector pathways activated by G proteins, including the
adenylate cyclase/cAMP pathway and the phospholipase C/IP₃/DAG pathway.
The course further investigates lipid-mediated signalling pathways involving phospholipase D and
phospholipase A₂, highlighting their roles in membrane dynamics, inflammation, and the
production of bioactive lipid mediators. Students will also study protein phosphorylation as a
fundamental regulatory mechanism, focusing on serine/threonine kinases, protein phosphatases,
receptor tyrosine kinases, tyrosine phosphatases, and the molecular processes governing signal
amplification and regulation.
Special emphasis is placed on Mitogen-Activated Protein Kinase (MAPK) pathways, calcium
signalling mechanisms, and intracellular hormone receptors such as estrogen and androgen
receptors. The physiological and pathological implications of these signalling systems are
discussed throughout the course, providing students with a solid foundation for understanding
modern molecular biology, biochemistry, pharmacology, and biomedical research. |
| URI/URL: | http://dspace.univ-setif.dz:8888/jspui/handle/123456789/6704 |
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