Studies on Human Erythrocyte Nucleotide Metabolism. II. Nonspherocytic Hemolytic Anemia, High Red Cell ATP, and Ribosephosphate Pyrophosphokinase (RPK, E.C. 2.7.6.1) Deficiency

Author:

Valentine William N.12,Anderson Helen M.13,Paglia Donald E.12,Jaffé Ernst R.14,Konrad Patricia N.15,Harris Susan R.14,Kürschner Klaus K.1

Affiliation:

1. Department of Medicine, University of California, Center for the Health Sciences and Wadsworth Hospital, Veterans Administration Center, Los Angeles, Calif., Albert Einstein College of Medicine-Bronx Municipal Hospital Center, Bronx, N. Y., and St. Vincent’s Hospital and Medical Center, New York.

2. Department of Medicine, University of California, Center for the Health Sciences, Los Angeles, Calif

3. St. Vincent's Hospital and Medical Center, New York City, N.Y.

4. Albert Einstein College of Medicine-Bronx Municipal Hospital Center, Bronx, N.Y.

5. Department of Pediatrics, University of California, Center for the Health Sciences, Los Angeles, Calif.

Abstract

Abstract A 29-yr-old black woman was found to have a long-standing, nonspherocytic hemolytic disorder associated with a marked reduction in the activity of erythrocyte ribosephosphate pyrophosphokinase (RPK, PRPP synthetase, E.C. 2.7.6.1). Although the patient’s erythrocytes had about 50% of the average RPK activity of normal mature human erythrocytes, this level represented only about 20-30% of the activity in comparable reticulocyte-rich blood samples from patients with other types of hemolytic anemias. The concentrations of adenosine triphosphate adenosine diphosphate, adenosine monophosphate and, therefore, of total adenine nucleotides in her erythrocytes were markedly increased, even well above the levels in extracts of comparable reticulocyte-rich blood samples. ATPase activity was increased three- to fourfold, consistent with the reticulocytosis. Adenylate kinase and adenine phosphoribosyltransferase activities were normal. The activities of all enzymes of the Embden-Meyerhof and hexose monophosphate shunt pathways and enzymes related to glutathione metabolism were normal or increased, consistent with the reticulocytosis. The concentrations of glycolytic intermediates, other than adenine nucleotides, were normal. The conversion of glucose, adenosine, and inosine to lactate was normal or increased. Autohemolysis was of the Dacie Type II. The concentrations of erythrocyte-reduced glutathione were high normal or elevated. The stained blood film showed a striking degree of basophilic stippling of the erythrocytes. Studies of the erythrocytes of the patient’s only known relative, a son, have failed to reveal any hematologic or enzymatic abnormalities. A direct causal relationship between RPK deficiency, high ATP concentrations, and nonspherocytic hemolytic anemia could not be derived from data now available. The final decision as to whether the deficiency is primary and causative or is an epiphenomenon requires investigation of additional cases.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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