Relationships among purine nucleoside metabolism, adenosine triphosphate catabolism, and glycolysis in human erythrocytes. 1979

J F Henderson, and G Zombor, and P W Burridge, and G Barankiewicz, and C M Smith

In human erythrocytes incubated with both naturally occurring purine nucleosides and with a variety of purine nucleoside analogs, ATP catabolism was accelerated and lactate accumulation was increased. Tubercidin was a particularly potent inducer of ATP catabolism. In cells incubated with tubercidin, the major route of adenylate metabolism was deamination, whereas in cells incubated with deoxyglucose, the major pathway was dephosphorylation.

UI MeSH Term Description Entries
D007461 Iodoacetates Iodinated derivatives of acetic acid. Iodoacetates are commonly used as alkylating sulfhydryl reagents and enzyme inhibitors in biochemical research. Iodoacetic Acids,Acids, Iodoacetic
D007773 Lactates Salts or esters of LACTIC ACID containing the general formula CH3CHOHCOOR.
D011684 Purine Nucleosides Purines with a RIBOSE attached that can be phosphorylated to PURINE NUCLEOTIDES. Purine Nucleoside,Nucleoside, Purine,Nucleosides, Purine
D003847 Deoxyglucose 2-Deoxy-D-arabino-hexose. An antimetabolite of glucose with antiviral activity. 2-Deoxy-D-glucose,2-Deoxyglucose,2-Desoxy-D-glucose,2 Deoxy D glucose,2 Deoxyglucose,2 Desoxy D glucose
D004912 Erythrocytes Red blood cells. Mature erythrocytes are non-nucleated, biconcave disks containing HEMOGLOBIN whose function is to transport OXYGEN. Blood Cells, Red,Blood Corpuscles, Red,Red Blood Cells,Red Blood Corpuscles,Blood Cell, Red,Blood Corpuscle, Red,Erythrocyte,Red Blood Cell,Red Blood Corpuscle
D006019 Glycolysis A metabolic process that converts GLUCOSE into two molecules of PYRUVIC ACID through a series of enzymatic reactions. Energy generated by this process is conserved in two molecules of ATP. Glycolysis is the universal catabolic pathway for glucose, free glucose, or glucose derived from complex CARBOHYDRATES, such as GLYCOGEN and STARCH. Embden-Meyerhof Pathway,Embden-Meyerhof-Parnas Pathway,Embden Meyerhof Parnas Pathway,Embden Meyerhof Pathway,Embden-Meyerhof Pathways,Pathway, Embden-Meyerhof,Pathway, Embden-Meyerhof-Parnas,Pathways, Embden-Meyerhof
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000255 Adenosine Triphosphate An adenine nucleotide containing three phosphate groups esterified to the sugar moiety. In addition to its crucial roles in metabolism adenosine triphosphate is a neurotransmitter. ATP,Adenosine Triphosphate, Calcium Salt,Adenosine Triphosphate, Chromium Salt,Adenosine Triphosphate, Magnesium Salt,Adenosine Triphosphate, Manganese Salt,Adenylpyrophosphate,CaATP,CrATP,Manganese Adenosine Triphosphate,MgATP,MnATP,ATP-MgCl2,Adenosine Triphosphate, Chromium Ammonium Salt,Adenosine Triphosphate, Magnesium Chloride,Atriphos,Chromium Adenosine Triphosphate,Cr(H2O)4 ATP,Magnesium Adenosine Triphosphate,Striadyne,ATP MgCl2
D012969 Sodium Fluoride A source of inorganic fluoride which is used topically to prevent dental caries. Fluoristat,Ossin,Zymafluor,Fluoride, Sodium,Fluorides, Sodium,Fluoristats,Ossins,Sodium Fluorides,Zymafluors
D014372 Tubercidin An antibiotic purine ribonucleoside that readily substitutes for adenosine in the biological system, but its incorporation into DNA and RNA has an inhibitory effect on the metabolism of these nucleic acids. 7-Deazaadenosine,4-Amino-7 beta-D-ribofuranosyl-7H-pyrrolo(2,3-d)pyrimidine,Deazaadenosine,7 Deazaadenosine

Related Publications

J F Henderson, and G Zombor, and P W Burridge, and G Barankiewicz, and C M Smith
September 1989, Cancer research,
J F Henderson, and G Zombor, and P W Burridge, and G Barankiewicz, and C M Smith
January 1984, FEBS letters,
J F Henderson, and G Zombor, and P W Burridge, and G Barankiewicz, and C M Smith
January 1957, Acta pharmacologica et toxicologica,
J F Henderson, and G Zombor, and P W Burridge, and G Barankiewicz, and C M Smith
June 1980, Nihon Ketsueki Gakkai zasshi : journal of Japan Haematological Society,
J F Henderson, and G Zombor, and P W Burridge, and G Barankiewicz, and C M Smith
January 1978, Methods in enzymology,
J F Henderson, and G Zombor, and P W Burridge, and G Barankiewicz, and C M Smith
April 1980, Biochemical genetics,
J F Henderson, and G Zombor, and P W Burridge, and G Barankiewicz, and C M Smith
April 1976, The Journal of clinical investigation,
J F Henderson, and G Zombor, and P W Burridge, and G Barankiewicz, and C M Smith
November 1973, Cancer research,
J F Henderson, and G Zombor, and P W Burridge, and G Barankiewicz, and C M Smith
November 1985, Blood,
J F Henderson, and G Zombor, and P W Burridge, and G Barankiewicz, and C M Smith
January 1977, Advances in experimental medicine and biology,
Copied contents to your clipboard!