Studies of Nucleoside Transporters Using Novel Autofluorescent Nucleoside Probes
- 1 January 2006
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 45 (4) , 1087-1098
- https://doi.org/10.1021/bi0520535
Abstract
To better understand nucleoside transport processes and intracellular fates of nucleosides, we have developed a pair of fluorescent nucleoside analogues, FuPmR and dFuPmR, that differ only in the sugar moiety (ribofuranosyl versus 2‘-deoxy, respectively), for real-time analysis of nucleoside transport into living cells by confocal microscopy. The binding and transportability of the two compounds were assessed for five recombinant human nucleoside transporters (hENT1/2, hCNT1/2/3) produced in Saccharomyces cerevisiae and/or oocytes of Xenopus laevis. The ribosyl derivative (FuPmR) was used to demonstrate proof of principle in live cell imaging studies in 11 cultured human cancer cell lines with different hENT1 activities. The autofluorescence emitted from FuPmR enabled direct visualization of its movement from the extracellular medium into the intracellular compartment of live cells, and this process was blocked by inhibitors of hENT1 (nitrobenzylmercaptopurine ribonucleoside, dipyridamole, and dilazep). Quantitative analysis of fluorescence signals revealed two stages of FuPmR uptake: a fast first stage that represented the initial uptake rate (i.e., transport rate) followed by a slow long-lasting second stage. The accumulation of FuPmR and/or its metabolites in nuclei and mitochondria was also visualized by live cell imaging. Measurements of fluorescence intensity increases in nuclei and mitochondria revealed rate-limited processes of permeant translocation across intracellular membranes, demonstrating for the first time the intracellular distribution of nucleosides and/or nucleoside metabolites in living cells. The use of autofluorescent nucleosides in time-lapse confocal microscopy is a novel strategy to quantitatively study membrane transport of nucleosides and their metabolites that will provide new knowledge of nucleoside biology.Keywords
This publication has 14 references indexed in Scilit:
- Identification and Mutational Analysis of Amino Acid Residues Involved in Dipyridamole Interactions with Human and Caenorhabditis elegans Equilibrative Nucleoside TransportersJournal of Biological Chemistry, 2005
- Electrophysiological characterization of a recombinant human Na+‐coupled nucleoside transporter (hCNT1) produced in Xenopus oocytesThe Journal of Physiology, 2004
- Mutation of Residue 33 of Human Equilibrative Nucleoside Transporters 1 and 2 Alters Sensitivity to Inhibition of Transport by Dilazep and DipyridamoleJournal of Biological Chemistry, 2002
- Flow cytometric studies of nucleoside transport regulation in single chromaffin cellsFEBS Letters, 1998
- Molecular cloning and functional expression of cDNAs encoding a human Na+-nucleoside cotransporter (hCNT1)American Journal of Physiology-Cell Physiology, 1997
- Flow cytometric quantitation of nucleoside transporter sites on human leukemic cellsCytometry, 1993
- Expression of high levels of nitrobenzylthioinosine-sensitive nucleoside transport in cultured human choriocarcinoma (BeWo) cellsBiochemical Journal, 1992
- A new fluorescent probe for the equilibrative inhibitor-sensitive nucleoside transporter. 5′-S-(2-aminoethyl)-N6-(4-nitrobenzyl)-5′-thioadenosine (SAENTA)-x2-fluoresceinBiochemical Journal, 1991
- Cytosine arabinoside transport and metabolism in acute leukemias and T cell lymphoblastic lymphoma.Journal of Clinical Investigation, 1985
- Nucleic acid related compounds. 39. Efficient conversion of 5-iodo to 5-alkynyl and derived 5-substituted uracil bases and nucleosidesThe Journal of Organic Chemistry, 1983