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1.
Баскаков М.Б. Роль вторичных мессенджеров и Na+/H+ обмена в регуляции электрической и сократительной активности гладких мышц // Кальций - регулятор метаболизма. -Томск, 1987.-С.128-151

2.
Voltage dependence of inositol 1,4S-triphosphate-induced Ca{2}+ release in peeled skeletal muscle fibres // Proc. Nat. Acad. Sci. USA, 1988. Vol. 85, N 15.-С.5749-5753

3.
Trowell Stephen C. Inositol trisphosphatase and bisphosphatase activities in the retina of crab // FEBS Lett., 1988. Vol. 238, N 2.-С.281-284

4.
Osborne N.N. Role of inositol trisphosphate as a second messenger in signal transduction processes: an essay // Neurochem Res., 1988. Vol. 18, N 3.-С.177-191

5.
Milani D-myo-inositol 1,4,5-trisphosphate phosphatase in skeletal muscle // Biochem. J., 1988. Vol. 254, N 2.-С.525-529

6.
Van Vasopressin modulates the spontaneuos electrical activity in aortic cells (line A7r5) by acting on three different types of ionic channels // Proc. Nat. Acad. Sci. USA, 1988. Vol. 85, N 23.-С.9365-9369

7.
Yousufzai Sardar Y.K. Species differences in the effects of prostaglandins on inositol triphosphate accumulation, phosphatidic acid formation, myosin light chain phosphorylation and contraction in iris sphincter of the mammalian eye: interaction with the cyclic AMP system // J. Pharmacol. and Exp. Ther., 1988. Vol. 247, N 3.-С.1064-1072

8.
Nowak Jerzy Z. Receptory blonowe a przemiany fosfatydyloinozytoli: trifosforan inozytolu i diacyloglicerol jako wtorne przekazniki informacji // Acta physiol. pol., 1988. Vol. 39, N 5-6 Suppl. 32.-С.1-52

9.
Sugiya Protein kinase C-dependent and -independent mechanisms regulating the parotid substance P receptor as revealed by differential effects of protein kinase C inhibitors // Biochem. J., 1988. Vol. 256, N 2.-С.677-680

10.
Tamura S. Kyotorphin mediates Ca{2}+ release from a novel IP[3]-sensitive calcium store in presynaptic plasma membranes through GTP-binding proteins // Neurochem. Res., 1989. Vol. 14, N 8.-С.793

11.
Dudek Serena M. A biochemical correlate of the critical period for synaptic modification in the visual cortex // Science, 1989. Vol. 256, N 4930.-С.673-675

12.
Factors involved in the generation of tension during contraction to high potassium in the rat vas deferens // Cell. Signall, 1989. Vol. 1, N 6.-С.599-605

13.
Fast kinetics of calcium release induced by myoinositoltrisphosphate in permeabilized rat hepatocytes // J. Physiol., 1989. Vol. 418.-С.Р178

14.
Morrison William J. Staurosporine potentiates platelet activating factor stimulated phospholipase C activity in rabbit platelets but does not block desensitization by platelet activating factor // Life Sci., 1989. Vol. 45, N 4.-С.333-339

15.
Memon Abdul R. Inositol trsphosphate metabolims in carrot (Daucus carota L.) cells // Plant Physiol., 1989. Vol. 91, N 2.-С.477-480

16.
Bradykinin induces inositol triphosphate-dependent hyperpolarization in K+(М)/current-deficient hybrid cells derived from neuroblastoma and ribroblasts // Neurochem. Res., 1989. Vol. 14, N 8.-С.803

17.
Comparison of roles of protein kinase C, Inositol Trisphosphate, and Ca{2}+ in cholinergic and 'альфа'[1]-adrenergic agonist stimulation of lacrimal gland protein secretion // J. Gen. Physiol., 1989. Vol. 94, N 6.-С.29а-30а

18.
Volpe Is inositol 1,4,5-trisphoshate the chemical transmitter for excitation-contraction coupling in skeletal muscle // Neuromuscular Function. -Amsterdam etc., 1989.-С.381-393

19.
Heilbronn E. Second messengers mobilized by ATP and ACh in the myotube/muscle fiber // Neuromuscular Junction. -Amsterdam etc., 1989.-С.395-404

20.
Cytosolic heparin inhibits muscarinic and 'альфа'-adrenergic Ca{2}+ release in smooth muscle. Physiological role of inositol 1,4,5-trisphosphate in pharmacomechanical coupling // J. Biol. Chem., 1989. Vol. 264, N 30.-С.17997-18004

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