Complement C3a receptors in the pituitary gland: a novel pathway by which an innate immune molecule releases hormones involved in the control of inflammation
Abstract
ABSTRACT Two‐way communication exists between the endocrine and immune systems using molecules such as hormones and cytokines. Here we describe a new pathway by which C3a, a complement‐ derived cytokine, stimulates anterior pituitary hormone release and activates the hypothalamic‐ pituitary‐adrenal axis, a reflex central to the stress response and to the control of inflammation. We show that C3a receptors are expressed in pituitary hormone secreting and non‐hormone secreting (folliculostellate) cells and that both C3a and C3adesArg (a non‐inflammatory metabolite) stimulate pituitary cell cultures to release prolactin, growth hormone, and adrenocorticotropin. Serum levels of these hormones, together with adrenal corticosterone, increase dose dependently with recombinant C3a and C3adesArg administration in vivo. Pertussis toxin blocks the response to C3a but not C3adesArg, which indicates the presence of two receptors, only one of which is coupled to Gαi‐proteins. We propose that the complement innate immune molecules (cytokines) modulate tissue‐specific and systemic inflammatory responses through communication with the endocrine pituitary gland.
Key Biomarkers
Symptom Clusters
Cited By (8)
- The role of complement in danger sensing and transmissionImmunologic Research · 2006
- AnaphylatoxinsImmunologic Research · 2007
- Harmful molecular mechanisms in sepsisNature reviews. Immunology · 2008
- Deletion of the Complement Anaphylatoxin C3a Receptor Attenuates, Whereas Ectopic Expression of C3a in the Brain Exacerbates, Experimental Autoimmune EncephalomyelitisThe Journal of Immunology · 2004
- Innate Immunity and Protective Neuroinflammation: New Emphasis on the Role of Neuroimmune Regulatory ProteinsInternational review of neurobiology · 2007
- C3a expressed in the central nervous system protects against LPS-induced shockNeuroscience Letters · 2005
- Complement: a unique innate immune sensor for danger signalsMolecular Immunology · 2004
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