Effects of zinc ex vivo on taurine uptake in goldfish retinal cells

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Abstract

Background. Taurine and zinc exert neurotrophic effects in the central nervous system. Current studies demonstrate that Na+/Cl- dependent neurotransmitter transporters, similar to that of taurine, are modulated by micromolar concentrations of zinc. This study examined the effect of zinc sulfate ex vivo on [3H]taurine transport in goldfish retina. Methods. Isolated cells were incubated in Ringer with zinc (0.1-100 νM). Taurine transport was done with 50 nM [3H]taurine or by isotopic dilution with taurine (0.001-1 mM) and 50 nM [3H]taurine. Results. Zinc reduced the capacity of taurine transport without changes in affinity, and caused a noncompetitive inhibition of high affinity taurine transport, with an EC50= 0.072 νM. The mechanism by which zinc affects taurine transport is unknown at the present. Conclusions. There may be a binding site of zinc in the transporter that affects union or translocation of taurine, or possibly the formation of taurine-zinc complexes, rather than free zinc, could affect the operation of the transporter. © 2010 Lima et al; licensee BioMed Central Ltd.

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Nusetti, S., Urbina, M., & Lima, L. (2010). Effects of zinc ex vivo on taurine uptake in goldfish retinal cells. In Journal of Biomedical Science (Vol. 17). https://doi.org/10.1186/1423-0127-17-S1-S13

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