Influence of Location of a Fluorescent Zinc Probe in Brain Slices on Its Response to Synaptic Activation

Author:

Kay Alan R.,Tóth Katalin

Abstract

The precise role of the high concentration of ionic zinc found in the synaptic vesicles of certain glutamatergic terminals is unknown. Fluorescent probes with their ability to detect ions at low concentrations provide a powerful approach to monitoring cellular Zn2+ levels. In the last few years, a number of fluorescent probes (indicators) have been synthesized that can be used to visualize Zn2+ in live cells. The interpretation of data gathered using such probes depends crucially on the location of the probe. Using acutely prepared hippocampal slices, we provide evidence that the Zn2+ probes, ZnAF-2 and ZP4, are membrane permeant and are able to pass into synaptic vesicles. In addition, we show that changes in fluorescence of the Zn2+ probes can be used to monitor presynaptic activity; however, these changes are inconsistent with Zn2+ release.

Publisher

American Physiological Society

Subject

Physiology,General Neuroscience

Reference34 articles.

1. Arslan P, Di Virgilio F, Beltrame M, Tsien RY, and Pozzan T. Cytosolic Ca+2 homeostasis in Ehrlich and Yoshida carcinomas: a new, membrane-permeant chelator of heavy metals reveals that these ascites tumor cell lines have normal cytosolic free Ca2+. J Biol Chem 260: 2719–2727, 1985.

2. Release of endogenous Zn2+ from brain tissue during activity

3. Discussion

4. Imaging free zinc in synaptic terminals in live hippocampal slices

5. ZP4, an Improved Neuronal Zn2+ Sensor of the Zinpyr Family

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