Abstract
When 10(-5) M carbachol was added to parotid tissue slices incubated in buffer containing Ca++, watery vacuoles were formed in the cells. The percent volume density of vacuoles, as measured from 0.5-micron sections, increased from 0.64 +/- 0.15 SE (n = 7) to 3.09 +/- 0.99 (n = 5) in 10 min and, finally, to 7.27 +/- 1.88 (n = 4) in 30 min. In electron micrographs, most of the vacuoles appeared to arise from a location near the Golgi apparatus. Condensation of nuclear chromatin and a conformational change in mitochondria were also noted immediately after stimulation. The percent volume density values returned to basal levels with the addition of either 5 mM EGTA or 10(-6) M atropine after the addition of carbachol. Nuclei and mitochondria returned to normal configurations. In the presence of either 1 mM ouabain or high K+, or in the absence of added Ca++, carbachol failed to induce vacuole formation. However, low Na+ medium did not prevent the formation of vacuoles due to carbachol. Ultrastructural changes in nuclei and mitochondria were consistently associated with the appearance of vacuoles. Since both high K+ and ouabain blocked vacuole formation, it is unlikely that Na+ or K+ movements were important for the response. Rather, receptor-activated Ca++ influx, which is likely to be inhibited by depolarizing agents (such as high K+ or ouabain), is probably the more important factor in vacuole formation and other concomitant ultrastructural changes.
MeSH Terms
Animals
Calcium/metabolism
Carbachol/pharmacology
Cell Nucleus/ultrastructure
Endoplasmic Reticulum/ultrastructure
Golgi Apparatus/ultrastructure
Male
Microscopy, Electron
Mitochondria/ultrastructure
Ouabain/pharmacology
Parotid Gland/drug effects,metabolism,ultrastructure
Potassium/metabolism
Rats
Rats, Inbred Strains
Sodium/metabolism
Vacuoles/ultrastructure
Chemicals
Ouabain
Carbachol
Sodium
Potassium
Calcium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Leslie B A
Putney J W
References (29)
29 references, click to expand
-
The experimental production of watery vacuolation in the acinar cells of the submandibular gland.
J Physiol. 1967 Jan;188(2):191-205
PMID: 6030511
-
Anoxic and secretory vacuolation in the acinar cells of the pancreas.
Q J Exp Physiol Cogn Med Sci. 1970 Jan;55(1):1-15
PMID: 5202920
-
The importance of extracellular sodium and potassium for acetylcholine-evoked salivary secretion.
Experientia. 1970 Oct 15;26(10):1103-4
PMID: 5483760
-
Epinephrine-induced vacuole formation in parotid gland cells and its independence of the secretory process.
Proc Natl Acad Sci U S A. 1971 Jan;68(1):121-3
PMID: 4322258
-
Calcium and energy requirements for K + release mediated by the epinephrine -receptor in rat parotid slices.
J Biol Chem. 1973 Jan 10;248(1):369-72
PMID: 4692840
-
Membrane potential measurement in parotid acinar cells.
J Physiol. 1973 Oct;234(1):217-27
PMID: 4797341
-
Golgi organelle response to the antibiotic X537A.
J Cell Biol. 1975 Aug;66(2):425-43
PMID: 1095600
-
The functions of cyclic AMP and calcium as alternative second messengers in parotid gland and pancreas.
J Cyclic Nucleotide Res. 1975;1(4):181-92
PMID: 177459
-
alpha-Adrenergic, beta-adrenergic and cholinergic mechanisms for amylase secretion by rat parotid gland in vitro.
J Physiol. 1976 Sep;260(2):351-70
PMID: 185365
-
Stimulation of 45Ca influx in rat parotid gland by carbachol.
J Pharmacol Exp Ther. 1976 Dec;199(3):526-37
PMID: 994016
-
The relationship between stimulation-induced potassium release and amylase secretion in the mouse parotid.
Pflugers Arch. 1977 Jul 19;369(3):207-11
PMID: 561368
-
Calcium-mediated effects of carbachol on cation pumping and Na uptake in rat parotid gland.
J Pharmacol Exp Ther. 1978 May;205(2):449-58
PMID: 641839
-
Oxygen consumption in the parotid gland.
Life Sci. 1978 May 15;22(19):1731-5
PMID: 672424
-
Role of calcium in the fade of the potassium release response in the rat parotid gland.
J Physiol. 1978 Aug;281:383-94
PMID: 212555
-
Reflex influences on watery vacuole formation in parotid acinar cells of rats [proceedings].
J Physiol. 1978 Nov;284:86P-87P
PMID: 731594
-
Receptor control of calcium influx in parotid acinar cells.
Mol Pharmacol. 1978 Nov;14(6):1046-53
PMID: 215892
-
Stimulus-permeability coupling: role of calcium in the receptor regulation of membrane permeability.
Pharmacol Rev. 1978 Jun;30(2):209-45
PMID: 224401
-
Oxygen consumption of isolated acini from rat parotid gland.
Eur J Cell Biol. 1980 Feb;20(3):201-8
PMID: 7358053
-
Calcium and receptor regulation of radiosodium uptake by dispersed rat parotid acinar cells.
J Physiol. 1979 Dec;297(0):369-77
PMID: 94091
-
Stimulus-permeability coupling in rat lacrimal gland.
Am J Physiol. 1980 Aug;239(2):G106-13
PMID: 6250411
-
The role of calcium in cell injury. A review.
Scan Electron Microsc. 1980;(Pt 2):437-62, 492
PMID: 6999604
-
Immunocytochemical localization of procollagen and fibronectin in human fibroblasts: effects of the monovalent ionophore, monensin.
J Cell Biol. 1980 Dec;87(3 Pt 1):663-71
PMID: 7007394
-
Formation of stimulus-induced vacuoles in serous cells of tracheal submucosal glands.
Am J Physiol. 1981 Jul;241(1):C18-24
PMID: 7246759
-
Possible mechanisms of stimulus-induced vacuolation in serous cells of tracheal secretory glands.
Am J Physiol. 1981 Jul;241(1):C25-32
PMID: 6264803
-
Tracheal submucosal gland serous cells stimulated in vitro with adrenergic and cholinergic agonists. A morphometric study.
Cell Tissue Res. 1981;220(3):481-98
PMID: 7296643
-
Actions of ionomycin in rat parotid gland.
J Pharmacol Exp Ther. 1982 Apr;221(1):247-53
PMID: 7062287
-
Inhibition of pinocytosis in rat embryo fibroblasts treated with monensin.
J Cell Biol. 1982 Mar;92(3):859-64
PMID: 6282896
-
Biology of disease: membrane injury and calcium homeostasis in the pathogenesis of coagulative necrosis.
Lab Invest. 1982 Aug;47(2):114-23
PMID: 7109537
-
A SIMPLIFIED LEAD CITRATE STAIN FOR USE IN ELECTRON MICROSCOPY.
J Cell Biol. 1965 May;25:407-8
PMID: 14287192