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Proglucagon (revision 11)

Old revision·09:06, 29 Oct 2024·GsCouplingGil

This is an old revision of this page, as it stood at 09:06, 29 Oct 2024, saved by GsCouplingGil with the summary consistent en dashes in ranges. It may differ substantially from the current revision, and any error it contains may since have been corrected.
Proglucagon
HAEGTFTSDVSSN-terminusC-terminus
A single 160-residue precursor yielding different products in pancreatic and intestinal tissue.
GeneGCG
Length160 residues (preproglucagon 180)
Processing enzymesProhormone convertase 1/3 and 2
Principal products
Pancreatic alpha cellGlucagon, glicentin-related pancreatic polypeptide
Intestinal L cellGLP-1, GLP-2, oxyntomodulin, glicentin
BrainstemGLP-1, GLP-2
Topic infobox · conventions

Proglucagon is the single precursor protein from which glucagon, Glucagon-like peptide-1 (GLP-1), glucagon-like peptide-2, oxyntomodulin and glicentin are all derived. It is encoded by one gene, GCG, and transcribed identically in the pancreatic alpha cell, the intestinal L cell and a population of neurons in the caudal brainstem.[1]

The products differ between those tissues because the processing enzymes do. Prohormone convertase 2 predominates in the alpha cell and liberates glucagon; prohormone convertase 1/3 predominates in the L cell and the brainstem and liberates GLP-1 and GLP-2 instead. A single transcript therefore yields a hyperglycaemic hormone in one tissue and a hypoglycaemic one in another.[2]

This arrangement has direct therapeutic consequences. The structural relatedness of the products is why a single engineered peptide can be designed to act at two or three receptors of the family at once — the basis of the dual and triple agonists — and why measuring "glucagon" by an antibody raised against a shared epitope has generated a long history of unreliable data.[1]

Gene and transcript

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GCG lies on human chromosome 2 and comprises six exons. A single mRNA species is produced in all expressing tissues; there is no tissue-specific splicing in humans. Translation yields preproglucagon of 180 residues, from which the 20-residue signal peptide is removed co-translationally to give the 160-residue prohormone.[1]

Transcription in the alpha cell is suppressed by insulin and by glucose, and stimulated during fasting — the arrangement expected of a counter-regulatory hormone. In the L cell, transcription responds instead to luminal nutrients and to short-chain fatty acids produced by colonic fermentation, and is comparatively insensitive to circulating glucose.[2]

Tissue-specific processing

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Processing is directed by which prohormone convertase is expressed.

TissueDominant convertasePrincipal products
Pancreatic alpha cellPC2Glucagon, GRPP, major proglucagon fragment
Intestinal L cellPC1/3GLP-1, GLP-2, oxyntomodulin, glicentin
Caudal brainstemPC1/3GLP-1, GLP-2

References

  1. ^ a b c Sandoval DA, D'Alessio DA. "Physiology of proglucagon peptides: role of glucagon and GLP-1 in health and disease." Physiological Reviews 95(2):513–548 (2015). DOI:10.1152/physrev.00013.2014. PMID 25834231.
  2. ^ a b Holst JJ. "The physiology of glucagon-like peptide 1." Physiological Reviews 87(4):1409–1439 (2007). PMID 17928588.