» Articles » PMID: 9930759

An Ecto-nucleotide Pyrophosphatase is One of the Main Enzymes Involved in the Extracellular Metabolism of ATP in Rat C6 Glioma

Overview
Journal J Neurochem
Specialties Chemistry
Neurology
Date 1999 Feb 4
PMID 9930759
Citations 31
Authors
Affiliations
Soon will be listed here.
Abstract

The presence of a nucleotide pyrophosphatase (EC 3.6.1.9) on the plasma membrane of rat C6 glioma has been demonstrated by analysis of the hydrolysis of ATP labeled in the base and in the alpha- and gamma-phosphates. The enzyme degraded ATP into AMP and PPi and, depending on the ATP concentration, accounted for approximately 50-75% of the extracellular degradation of ATP. The association of the enzyme with the plasma membrane was confirmed by ATP hydrolysis in the presence of a varying concentration of pyridoxal phosphate-6-azophenyl-2',4'-disulfonic acid (PPADS), a membrane-impermeable inhibitor of the enzyme. PPADS concentration above 20 microM abolished the degradation of ATP into AMP and PPi. The nucleotide pyrophosphatase has an alkaline pH optimum and a Km for ATP of 17 +/- 5 microM. The enzyme has a broad substrate specificity and hydrolyzes nucleoside triphosphates, nucleoside diphosphates, dinucleoside polyphosphates, and nucleoside monophosphate esters but is inhibited by nucleoside monophosphates, adenosine 3',5'-bisphosphate, and PPADS. The substrate specificity characterizes the enzyme as a nucleotide pyrophosphatase/phosphodiesterase I (PD-I). Immunoblotting and autoadenylylation identified the enzyme as a plasma cell differentiation antigen-related protein. Hydrolysis of ATP terminates the autophosphorylation of a nucleoside diphosphate kinase (NDPK/nm23) detected in the conditioned medium of C6 cultures. A function of the pyrophosphatase/PD-I and NDPK in the purinergic and pyrimidinergic signal transduction in C6 is discussed.

Citing Articles

Enzyme histochemistry: a useful tool for examining the spatial distribution of brain ectonucleotidases in (patho)physiological conditions.

Grkovic I, Mitrovic N, Dragic M, Zaric Kontic M Histol Histopathol. 2022; 37(10):919-936.

PMID: 35575291 DOI: 10.14670/HH-18-471.


Enzymology of extracellular NAD metabolism.

Gasparrini M, Sorci L, Raffaelli N Cell Mol Life Sci. 2021; 78(7):3317-3331.

PMID: 33755743 PMC: 8038981. DOI: 10.1007/s00018-020-03742-1.


Host CD39 Deficiency Affects Radiation-Induced Tumor Growth Delay and Aggravates Radiation-Induced Normal Tissue Toxicity.

Meyer A, Klein D, de Leve S, Szymonowicz K, Stuschke M, Robson S Front Oncol. 2020; 10:554883.

PMID: 33194619 PMC: 7649817. DOI: 10.3389/fonc.2020.554883.


UDP-sugars activate P2Y receptors to mediate vasoconstriction of the porcine coronary artery.

Abbas Z, Latif M, Dovlatova N, Fox S, Heptinstall S, Dunn W Vascul Pharmacol. 2017; 103-105:36-46.

PMID: 29253618 PMC: 5906693. DOI: 10.1016/j.vph.2017.12.063.


Highly potent and selective ectonucleotide pyrophosphatase/phosphodiesterase I inhibitors based on an adenosine 5'-(α or γ)-thio-(α,β- or β,γ)-methylenetriphosphate scaffold.

Nadel Y, Lecka J, Gilad Y, Ben-David G, Forster D, Reiser G J Med Chem. 2014; 57(11):4677-91.

PMID: 24846781 PMC: 4363092. DOI: 10.1021/jm500196c.