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1.
Proc Natl Acad Sci U S A ; 93(10): 4799-803, 1996 May 14.
Article in English | MEDLINE | ID: mdl-8643483

ABSTRACT

We report on a procedure for tissue preparation that combines thoroughly controlled physical and chemical treatments: quick-freezing and freeze-drying followed by fixation with OsO4 vapors and embedding by direct resin infiltration. Specimens of frog cutaneous pectoris muscle thus prepared were analyzed for total calcium using electron spectroscopic imaging/electron energy loss spectroscopy (ESI/EELS) approach. The preservation of the ultrastructure was excellent, with positive K/Na ratios revealed in the fibers by x-ray microanalysis. Clear, high-resolution EELS/ESI calcium signals were recorded from the lumen of terminal cisternae of the sarcoplasmic reticulum but not from longitudinal cisternae, as expected from previous studies carried out with different techniques. In many mitochondria, calcium was below detection whereas in others it was appreciable although at variable level. Within the motor nerve terminals, synaptic vesicles as well as some cisternae of the smooth endoplasmic reticulum yielded positive signals at variance with mitochondria, that were most often below detection. Taken as a whole, the present study reveals the potential of our experimental approach to map with high spatial resolution the total calcium within individual intracellular organelles identified by their established ultrastructure, but only where the element is present at high levels.


Subject(s)
Calcium/metabolism , Electron Probe Microanalysis/methods , Neuromuscular Junction/metabolism , Neuromuscular Junction/ultrastructure , Animals , Histocytochemistry , Histological Techniques , In Vitro Techniques , Motor Neurons/metabolism , Organelles/metabolism , Potassium/metabolism , Rana pipiens , Sarcoplasmic Reticulum/metabolism , Sodium/metabolism , Synaptic Vesicles/metabolism
2.
Cell Biol Int Rep ; 13(12): 1023-38, 1989 Dec.
Article in English | MEDLINE | ID: mdl-2517595

ABSTRACT

Synaptophysin, an integral protein of the synaptic vesicle membrane, and synapsin I, a phosphoprotein associated with the cytoplasmic side of synaptic vesicles, represent useful markers that allow to follow the movements of the vesicle membrane during recycling. The use of antibodies against these proteins to label nerve terminals during experimental treatments which stimulate secretion has provided evidence that during the exo-endocytotic cycle synaptic vesicles transiently fuse with the axolemma, from which they are specifically recovered. When recycling is blocked, exocytosis leads to the permanent incorporation of the synaptic vesicle membrane into the axolemma and to diffusion of the vesicle components in the plane of the membrane.


Subject(s)
Endocytosis , Membrane Proteins/metabolism , Nerve Tissue Proteins/metabolism , Neurons/metabolism , Synaptic Vesicles/metabolism , Animals , Neurons/physiology , Synapsins , Synaptophysin
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