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Ontogenesis of Physiological Responsiveness and Guanine Nucleotide Sensitivity of Cardiac Muscarinic Receptors during Chick Embryonic Development

  • University of Washington

Research output: Contribution to journalArticlepeer-review

57 Scopus citations

Abstract

Atria isolated from 4-day chick embryos were much less responsive to the negative chronotropic effect of muscarinic agonists than were atria from 5- or 8-day embryos, even though the density of muscarinic acetylcholine receptors (mAChR) was similar at all these ages. The mAChR in hearts from 4-day embryos were also significantly less susceptible to regulation of receptor number by in vivo agonist treatment and required a 2-5-fold greater dose of the muscarinic agonist carbachol to achieve a decrease in receptor number equivalent to that observed in 5- or 8-day embryonic hearts. When 4-day atrial membranes were assayed in physiological buffers, agonist binding to the mAChR was not regulated by GTP unless a sulfhydryl reducing agent was present. Receptors from 5- and 8-day embryos did not require addition of a sulfhydryl reducing agent in order to see guanine nucleotide effects on agonist binding. Even in the presence of a sulfhydryl reducing agent, carbachol binding to the mAChR in 4-day membranes was much less sensitive to guanyl-5′-yl imidodiphosphate (GppNHp) than binding to mAChR in 5- or 8-day membranes. In addition, forskolin-activated adenylate cyclase activity was much less sensitive to inhibition by GppNHp in membranes from 4-day atria than from 5- and 8-day atria. The GTP-binding component (NI) which couples the mAChR to inhibition of adenylate cyclase activity was examined by covalent modification with pertussis toxin. Two polypeptides with molecular weights of 39 000 and 42 000 were observed by one-dimensional gel electrophoresis, and each molecular weight component was resolved further into two species by isoelectric focusing. There was an increase between 4 and 8 days in the relative amount of the 39 000-dalton component and also a dramatic increase in the acidic form of the 39 000-dalton component. Thus, both functional and physical changes in NI are observed during development as the mAChR in the embryonic chick heart acquires physiological responsiveness.

Original languageEnglish
Pages (from-to)5813-5821
Number of pages9
JournalBiochemistry
Volume23
Issue number24
DOIs
StatePublished - Nov 1984

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