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Dipyridamole-insensitive nucleoside transport in mutant murine T lymphoma cells
Abstract:
From a mutagenized population of S49 murine T lymphoma cells, a mutant cell line, JPA4, was selected that expressed an altered nucleoside transport capability. JPA4 cells transported low concentrations of purine nucleosides and uridine more rapidly than the parental S49 cell line. The transport of these nucleosides by mutant cells was insensitive to inhibition by either dipyridamole (DPA) or 4-nitrobenzylthioinosine (NBMPR), two potent inhibitors of nucleoside transport in mammalian cells. Kinetic analyses revealed that the apparent Km values for the transport of uridine, adenosine, and inosine were 3-4-fold lower in JPA4 cells compared to wild type cells. In contrast, the transport of both thymidine and cytidine by JPA4 cells was similar to that of parental cells, and transport of these pyrimidine nucleosides remained sensitive to inhibition by both NBMPR and DPA. Furthermore, thymidine was a 10-12-fold weaker inhibitor of inosine transport in JPA4 cells than in wild type cells. Thus, JPA4 cells appeared to express two types of nucleoside transport activities; a novel (mutant) type that was insensitive to inhibition by DPA and NBMPR and transported purine nucleosides and uridine, and a parental type that retained sensitivity to inhibitors and transported cytidine and thymidine. The phenotype of the JPA4 cell line suggests that the sensitivity of mammalian nucleoside transporters to both NBMPR and DPA can be genetically uncoupled from its ability to transport certain nucleoside substrates and that the determinants on the nucleoside transporter that interact with each nucleoside are not necessarily identical.
Insights
A new mutant cell line, JPA4, shows altered nucleoside transport, featuring a novel transporter for purine nucleosides and uridine insensitive to dipyridamole (DPA) and 4-nitrobenzylthioinosine (NBMPR). This suggests uncoupled genetic control over transporter inhibition and substrate specificity.
Area of Science:
- Cell Biology
- Molecular Pharmacology
Background:
- Nucleoside transporters are crucial for cellular uptake of nucleosides.
- Mammalian nucleoside transport is typically inhibited by dipyridamole (DPA) and 4-nitrobenzylthioinosine (NBMPR).
Purpose of the Study:
- To characterize a novel nucleoside transport capability in a mutant cell line.
- To investigate the relationship between nucleoside transporter inhibition and substrate specificity.
Main Methods:
- Selection and characterization of a mutagenized S49 murine T lymphoma cell line (JPA4).
- Kinetic analysis of nucleoside transport (uridine, adenosine, inosine, thymidine, cytidine).
- Assessment of inhibition by DPA and NBMPR.
Main Results:
- JPA4 cells exhibit enhanced transport of purine nucleosides and uridine, insensitive to DPA and NBMPR.
- Transport of thymidine and cytidine in JPA4 cells remained similar to parental cells and sensitive to inhibitors.
- Thymidine showed significantly reduced inhibition of inosine transport in JPA4 cells.
Conclusions:
- JPA4 cells possess two distinct nucleoside transport activities: a novel, inhibitor-insensitive type and a parental, inhibitor-sensitive type.
- The study demonstrates that sensitivity to NBMPR and DPA can be genetically separated from substrate transport function.
- Nucleoside transporter determinants for nucleoside interaction may not be identical.