Javascript must be enabled to continue!
Structural basis of nucleoside and nucleoside drug selectivity by concentrative nucleoside transporters
View through CrossRef
Concentrative nucleoside transporters (CNTs) are responsible for cellular entry of nucleosides, which serve as precursors to nucleic acids and act as signaling molecules. CNTs also play a crucial role in the uptake of nucleoside-derived drugs, including anticancer and antiviral agents. Understanding how CNTs recognize and import their substrates could not only lead to a better understanding of nucleoside-related biological processes but also the design of nucleoside-derived drugs that can better reach their targets. Here, we present a combination of X-ray crystallographic and equilibrium-binding studies probing the molecular origins of nucleoside and nucleoside drug selectivity of a CNT from Vibrio cholerae. We then used this information in chemically modifying an anticancer drug so that it is better transported by and selective for a single human CNT subtype. This work provides proof of principle for utilizing transporter structural and functional information for the design of compounds that enter cells more efficiently and selectively.
eLife Sciences Publications, Ltd
Title: Structural basis of nucleoside and nucleoside drug selectivity by concentrative nucleoside transporters
Description:
Concentrative nucleoside transporters (CNTs) are responsible for cellular entry of nucleosides, which serve as precursors to nucleic acids and act as signaling molecules.
CNTs also play a crucial role in the uptake of nucleoside-derived drugs, including anticancer and antiviral agents.
Understanding how CNTs recognize and import their substrates could not only lead to a better understanding of nucleoside-related biological processes but also the design of nucleoside-derived drugs that can better reach their targets.
Here, we present a combination of X-ray crystallographic and equilibrium-binding studies probing the molecular origins of nucleoside and nucleoside drug selectivity of a CNT from Vibrio cholerae.
We then used this information in chemically modifying an anticancer drug so that it is better transported by and selective for a single human CNT subtype.
This work provides proof of principle for utilizing transporter structural and functional information for the design of compounds that enter cells more efficiently and selectively.
Related Results
Uptake Transporters of the SLC21, SLC22A, and SLC15A Families in Anticancer Therapy—Modulators of Cellular Entry or Pharmacokinetics?
Uptake Transporters of the SLC21, SLC22A, and SLC15A Families in Anticancer Therapy—Modulators of Cellular Entry or Pharmacokinetics?
Solute carrier transporters comprise a large family of uptake transporters involved in the transmembrane transport of a wide array of endogenous substrates such as hormones, nutrie...
Physiology and Pharmacology of Neurotransmitter Transporters
Physiology and Pharmacology of Neurotransmitter Transporters
AbstractRegulation of the ability of a neurotransmitter [our focus: serotonin, norepinephrine, dopamine, acetylcholine, glycine, and gamma‐aminobutyric acid (GABA)] to reach its re...
Amine Transporters
Amine Transporters
Abstract
Amine transporters in plasma membranes of nerve cells mediate the transport of dopamine, (nor)adrenaline and serotonin. ...
Genome-wide analysis of ATP-binding cassette transporters sheds light on the genes related to bioactive metabolite transportation in Salvia miltiorrhiza
Genome-wide analysis of ATP-binding cassette transporters sheds light on the genes related to bioactive metabolite transportation in Salvia miltiorrhiza
Abstract
Background: ATP-binding cassette (ABC) transporters have been found in plants and play important roles in metabolic transport in cells, which affect the subcellula...
A Decade’s Review of miRNA: A Center of Transcriptional Regulation of Drugmetabolizing Enzymes and Transporters under Hypoxia
A Decade’s Review of miRNA: A Center of Transcriptional Regulation of Drugmetabolizing Enzymes and Transporters under Hypoxia
Background:
Hypoxia has a negative effect on the cardiovascular system, nervous system, and metabolism,
which contributes to potential changes in drug absorption, distribution, met...
Drug Metabolism and Interactions in Pediatric Patients
Drug Metabolism and Interactions in Pediatric Patients
AbstractInfants and children are different from adults, also in the way they handle (pharmacokinetics, PK) and subsequently respond (pharmacodynamics) to drugs. Developmental PK fo...
The Reciprocal Interaction of Small Molecule Protein Kinase Inhibitors and ATP-Binding Cassette Transporters in Targeted Cancer Therapy
The Reciprocal Interaction of Small Molecule Protein Kinase Inhibitors and ATP-Binding Cassette Transporters in Targeted Cancer Therapy
Protein kinaseshave become the second most important group of drug targets, after G-protein-coupled receptors. Currently,15 small molecule protein kinase inhibitors (PKIs) have re...
Regulation of renal organic cation transporters
Regulation of renal organic cation transporters
Transporters for organic cations (OCs) facilitate exchange of positively charged molecules through the plasma membrane. Substrates for these transporters encompass neurotransmitter...

