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1.
Phospholipase C-mediated hyrolysis of phosphatidylcholine is activated by muscarinic agonists // Biochem. J., 1989. Vol. 263, N 1.-С.115-120

2.
Avissar Carbamylcholine inhibits 'бета'-adrenergic receptor-coupled G[s] protein function proximal to adenylate cyclase // FEBS Lett, 1990. Vol. 260, N 1.-С.95-97

3.
Inhibition of inositol 1,4,5-trisphosphate-induced Ca{2}+ release in permeabilized pancreatic acinar cells by hormonal and phorbol ester pretreatment // J. Biol. Chem., 1989. Vol. 264, N 17.-С.9762-9767

4.
Effects of cholecystokinin and carbamylcholine on Paneth cell secretion in mice: a comparison with pancreatic acinar cells // Anat. Rec., 1989. Vol. 225, N 2.-С.124-132

5.
Watson M. In-vivo regulation of CNS muscarinic receptor subtypes by chronic agonist and antagonist administration in rats // Trends Pharmacol. Sci., 1989. Vol. 10, Suppl..-С.104-105

6.
Lai Wi S. Protein kinase C is involved in desensitization of muscarinic receptors induced by phorbol esters but not by receptor agonists // Biochem. J., 1990. Vol. 267, N 1.-С.23-29

7.
Cholinergic enhancement of megakaryocytopoiesis and granulocytopoiesis in culture: mediation via Tlymphocytes // Exp. Hematol., 1989. Vol. 17, N 11.-С.1067-1071

8.
Satoh Y. Effect of carbamylcholine on Harderian gland morphology in rats // Cell and Tissue Res., 1990. Vol. 261, N 3.-С.451-459

9.
Winicov Receptor density determines secretory response patterns mediated by inositol lipid-derived second messengers. Comparison of thyrotropin-releasing hormone and carbamylcholine actions in thyroid-stimulating hormonesecreting mouse pituitary tumor cells // J. Biol. Chem., 1985. Vol. 264, N 16.-С.9438-9443

10.
Marque J.J. Using caged neurotransmitters // Nature, 1989. Vol. 337, N 6207.-С.583-584

11.
Receptor-mediated sitmulation of inositol phospholipid hydrolysis in human brain // Eur. J. Pharmacol., 1989. Vol. 160, N 2.-С.299-301

12.
Pertussis toxin treatment does not inhibit the effects of the potassium channel opener BRL 34915 on rat isolated vascular and cardiac tissues // Naunyn. Schmiedebergs Arch. Pharmacol., 1988. Vol. 337, N 1.-С.98-104

13.
Mechanism of enhanced sensitivity to bradykinin in pertussis toxin-treated fibroblasts // Mol. Pharmacol., 1988. Vol. 34, N 3.-С.279-285

14.
Muscarinic agents modify kinetics properties of membranebound guanylyl cyclase activity // FEBS Lett., 1989. Vol. 253, N 1-2.-С.16-22

15.
Moscona-Amir Aging of rat heart myocytes disrupts muscarinic receptor coupling that leads to inhibition of cAMP accumulation and alters the pathway of muscarinic-stimulated phosphoinositide hydrolysis // Biochemistry, 1989. Vol. 28, N 17.-С.7130-7137

16.
Acetylcholine-activated ion channels in embryonic cockroach neurones growing in culture // J. Exp. Biol., 1989. Vol. 142.-С.337-355

17.
Hu Effects of carbamylcholine and impromidine on cell cyclf state of CFU-S // Шэнли сюэбао, 1989. Vol. 41, N 3.-С.278-283

18.
Pharmacological study on Ba{2}+-stimulated catecholamine secretion from cultured bovine adrenal chromaffin cells: possible relation of Ba{2}+ action to Ca{2}+-activated secretory mechanism // Jap. J. Pharmacol., 1991. Vol. 55, N 1.-С.43-50

19.
Haraguohi K. Carbachol-activated muscarinic (М1 и М3) receptors transfected into Chinese hamster ovary cells inhibit trafficking of endosomes // Proc. Nat. Acad. Sci. USA, 1991. Vol. 88, N 14.-С.5964-5968

20.
Min Churl K. Substance P inhibits carbamylcholine-stimulated {2}{2}Na{+} efflux from acetylcholine receptor-enriched Torpedo electroplaque membrane vesicles // Brain Res., 1992. Vol. 586, N 2.-С.348-351

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