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Human cytosolic 5'-nucleotidase I: characterization and role in nucleoside analog resistance
S A Hunsucker1, J Spychala, B S Mitchell
1Lineberger Comprehensive Cancer Center, Departments of Pharmacology and Medicine, University of North Carolina at Chapel Hill, 27599-7295, USA.
Abstract:
Nucleoside analogs are important in the treatment of hematologic malignancies, solid tumors, and viral infections. Their metabolism to the triphosphate form is central to their chemotherapeutic efficacy. Although the nucleoside kinases responsible for the phosphorylation of these compounds have been well described, the nucleotidases that may mediate drug resistance through dephosphorylation remain obscure. We have cloned and characterized a novel human cytosolic 5'-nucleotidase (cN-I) that potentially may have an important role in nucleoside analog metabolism. It is expressed at a high level in skeletal and heart muscle, at an intermediate level in pancreas and brain, and at a low level in kidney, testis, and uterus. The recombinant cN-I showed high affinity toward dCMP and lower affinity toward AMP and IMP. ADP was necessary for maximal catalytic activity. Expression of cN-I in Jurkat and HEK 293 cells conferred resistance to 2-chloro-2'-deoxyadenosine, with a 49-fold increase in the IC(50) in HEK 293 and a greater than 400-fold increase in the IC(50) in Jurkat cells. Expression of cN-I also conferred a 22-fold increase in the IC(50) to 2',3'-difluorodeoxycytidine in HEK 293 cells and an 82-fold increase in the IC(50) to 2',3'-dideoxycytidine in Jurkat cells. These data indicate that cN-I may play an important role in the regulation of physiological pyrimidine nucleotide pools and may also alter the therapeutic efficacy of certain nucleoside analogs.
Insights
A novel human cytosolic 5'-nucleotidase (cN-I) was identified, playing a key role in nucleoside analog metabolism. Its expression confers significant drug resistance, impacting cancer and viral infection therapies.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Nucleoside analogs are crucial chemotherapeutics for malignancies and viral infections.
- Phosphorylation to the active triphosphate form is key to their efficacy.
- Nucleotidases mediating dephosphorylation and potential drug resistance are poorly understood.
Purpose of the Study:
- To clone and characterize a novel human cytosolic 5 -nucleotidase (cN-I).
- To investigate the role of cN-I in nucleoside analog metabolism and drug resistance.
Main Methods:
- Cloning and characterization of human cytosolic 5 -nucleotidase (cN-I).
- Enzyme kinetic analysis of recombinant cN-I with various nucleoside monophosphates.
- Expression of cN-I in Jurkat and HEK 293 cells to assess drug resistance.
Main Results:
- cN-I exhibits high affinity for dCMP and lower affinity for AMP and IMP, requiring ADP for maximal activity.
- Expression of cN-I in cell lines significantly increased resistance to nucleoside analogs like 2-chloro-2 -deoxyadenosine, 2 ',3 '-difluorodeoxycytidine, and 2 ',3 '-dideoxycytidine.
Conclusions:
- cN-I is a novel enzyme involved in nucleoside analog metabolism.
- cN-I expression can confer significant drug resistance, potentially altering therapeutic efficacy.
- cN-I may play a role in regulating physiological pyrimidine nucleotide pools.