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ACTH 1-13

In the anterior pituitary gland (see Hormones, anteriorpituitaryhormones), both adrenocorticotropic hormones (ACTH) and the endogenous opiate hormone, P-endorphin, are synthesized from a common prohormone (2) (see Opioids,endogenous). In the adrenal medulla, five to seven copies of another opiate hormone, methionine—enkephalin (Met-enkephalin), and one copy of leucine—enkephalin (Leu-enkephalin) are synthesized from each precursor molecule (3). [Pg.171]

Control of secretion of anterior pituitary hormones also includes inhibition by hormones produced by target organs. For example, CRH stimulates the anterior pituitary to secrete ACTH, which in turn stimulates the adrenal cortex to secrete corticosteroids. Corticosteroids then feed back to inhibit the secretion of ACTH. Feedback mechanisms are important for the control of most hormones. For example, insulin (qv) secretion from the pancreas increases in response to increased blood glucose resulting from ingestion of a meal. Insulin increases tissue uptake and metaboHsm of glucose, which lowers blood glucose and in turn reduces insulin secretion. [Pg.171]

P-Endorphin. A peptide corresponding to the 31 C-terminal amino acids of P-LPH was first discovered in camel pituitary tissue (10). This substance is P-endorphin, which exerts a potent analgesic effect by binding to cell surface receptors in the central nervous system. The sequence of P-endorphin is well conserved across species for the first 25 N-terminal amino acids. Opiates derived from plant sources, eg, heroin, morphine, opium, etc, exert their actions by interacting with the P-endorphin receptor. On a molar basis, this peptide has approximately five times the potency of morphine. Both P-endorphin and ACTH ate cosecreted from the pituitary gland. Whereas the physiologic importance of P-endorphin release into the systemic circulation is not certain, this molecule clearly has been shown to be an important neurotransmitter within the central nervous system. Endorphin has been invaluable as a research tool, but has not been clinically useful due to the avadabihty of plant-derived opiates. [Pg.175]

In humans, the hypothalamic-derived protein and the hormone noncovalent complexes are packaged in neurosecretory granules, then migrate along axons at a rate of 1 4 mm/h until they reach the posterior pituitary where they are stored prior to release into the bloodstream by exocytosis (67). Considerable evidence suggests that posterior pituitary hormones function as neurotransmitters (68) vasopressin acts on the anterior pituitary to release adrenocorticotropic hormone [9002-60-2] (ACTH) (69) as well as on traditional target tissues such as kidneys. Both hormones promote other important central nervous system (CNS) effects (9,70). [Pg.191]

Endorphin (143) is produced from pto-opiomelanocottin, a precursor for a-, P-, and y-melanocyte stimulating hormones (MSH), adtenocorticotropin (ACTH), which includes the a-MSH sequence, and P-Hpotropin (P-LPH), which includes P-MSH and P-endotphin sequences. [Pg.544]

In addition to the weU-defined opioid systems in the central nervous system, the three opioid peptides and their precursor mRNA have also been identified in peripheral tissues. ( -Endorphin is most abundant in the pituitary, where it exists in corticotroph cells with ACTH in the anterior lobe and in melanotroph cells with MSH in the intermediate lobe (59). Enkephalin and pre-pro-enkephalin mRNA have been identified in the adrenal medulla (60) and this has been the source of material for many studies of pro-enkephalin synthesis and regulation. Pre-pro-enkephalin mRNA has also been identified in the anterior and posterior lobes of the pituitary (61). mRNA for all three opioid precursors has been identified in the reproductive system (62—64). POMC... [Pg.446]

ACTH = adrenocortico-trophic hormone T4 = thyroxine T3 = triiodothyronine E, = estradiol T = testosterone I7,20/IP = 17,20/1-dihydroxy-4-pregnen-3-one KT = Il-ketotestosterone VTG = vitellogenin. [Pg.31]

Pregnenolone is transported from the mitochondria to the ER, where a hydroxyl oxidation and migration of the double bond yield progesterone. Pregnenolone synthesis in the adrenal cortex is activated by adrenocorticotropic hormone (ACTH), a peptide of 39 amino acid residues secreted by the anterior pituitary gland. [Pg.848]


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A ACTH

ACTH (adrenocorticotropic

ACTH (also

ACTH 4-9 analog Org

ACTH Receptor Affinity

ACTH Secretion and Tissue Content

ACTH adenylate cyclase in action

ACTH aldosterone secretion regulated

ACTH and protein kinase

ACTH cortisol secretion regulated

ACTH endocrine system

ACTH on growth and metabolism

ACTH secretion

ACTH secretion regulation

ACTH therapy

ACTH, structure

ACTH, synthesis

ACTH-like material

Adrenal adenoma ACTH-secreting

Adrenal zones, ACTH

Adrenocorticotrophic hormone ACTH)

Adrenocorticotropic hormone ACTH)

Adrenocorticotropic hormone ACTH, corticotropin)

Adrenocorticotropic hormone human ACTH

Adrenocorticotropin hormone ACTH)

Allergy to ACTH

Ascorbic acid effect of ACTH

Aspects of Allergic Reactions to ACTH

Corticotropin (ACTH Adrenocorticotrophic

Corticotropin (adrenocorticotropin, ACTH

Cyproheptadine ACTH secretion

Ectopic ACTH syndrome

Lipolysis, ACTH-induced

Peptide ACTH-derived, structure-activity

Pituitary adenoma ACTH secreting

Pituitary gland ACTH production

Rapid ACTH stimulation test

Structure-activity studies, ACTH

The intracellular messenger for ACTH

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