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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.

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.

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