Literature DB >> 5666119

An inherited molecular lesion of erythrocyte pyruvate kinase. Identification of a kinetically aberrant isozyme associated with premature hemolysis.

D E Paglia, W N Valentine, M A Baughan, D R Miller, C F Reed, O R McIntyre.   

Abstract

Atypical cases of heritable hemolytic anemia have been noted that conform clinically and biochemically to anemias of the pyruvatekinase (PK)-deficient type, except for the presence of apparently adequate quantities of erythrocyte-PK activity by the usual assay procedure. Investigations of four such anomalous cases, occurring in two unrelated families, are presented. Erythrocytes contained a kinetically aberrant isozyme of pyruvate kinase (PK(2)). Michaelis constants for the pathologic isozyme relative to phosphoenolpyruvate were over 10-fold greater than control values, but no kinetic abnormality was evident for the second substrate, adenosine diphosphate. PK(2) exhibited a pH optimum almost 1 U lower than the wild enzyme form (PK(1)). Significant differences were also evident in the functional stabilities of the isozymes. Leukocytes were unaffected. Family studies revealed paternal heterozygosity for quantitative PK deficiency of the usual type. Clinically normal maternal relatives and some siblings demonstrated intermediate deviations in erythrocyte-PK kinetics and reaction characteristics compatible with coexistence of normal PK(1) and kinetically abnormal PK(2). Hemolytic anemia in the propositi appeared to require simultaneous inheritance of the gene governing PK(2) production and its presumed allele resulting in quantitative PK deficiency. Both genetic defects were traced through three generations, the defective gene in both instances apparently resident on autosomes.A revision of the PK assay technique is suggested, since catalytic inefficiency of PK(2) was manifested only at low substrate concentrations and was therefore undetectable at the relatively high phosphoenolpyruvate levels employed in the conventional assay.

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Year:  1968        PMID: 5666119      PMCID: PMC297353          DOI: 10.1172/JCI105883

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  23 in total

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Authors:  G Jacobasch; I Syllm-Rapoport; H Scharfschwerdt; F M Otto; H Pester
Journal:  Folia Haematol Int Mag Klin Morphol Blutforsch       Date:  1965

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Authors:  D Busch
Journal:  Folia Haematol Int Mag Klin Morphol Blutforsch       Date:  1965

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Authors:  D R Miller; R L Baehner; L K Diamond
Journal:  Pediatrics       Date:  1967-05       Impact factor: 7.124

4.  Control of glycolysis in the human red blood cell.

Authors:  I A Rose; J V Warms
Journal:  J Biol Chem       Date:  1966-11-10       Impact factor: 5.157

5.  Kinetic differences between human red cell and leucocyte pyruvate kinase.

Authors:  J O Campos; R D Koler; R H Bigley
Journal:  Nature       Date:  1965-10-09       Impact factor: 49.962

Review 6.  Pyruvate kinase deficiency and related disorders of red cell glycolysis.

Authors:  A S Keitt
Journal:  Am J Med       Date:  1966-11       Impact factor: 4.965

7.  Computer simulation studies of mammalian pyruvate kinase.

Authors:  L A Kerson; D Garfinkel; A S Mildvan
Journal:  J Biol Chem       Date:  1967-05-10       Impact factor: 5.157

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Authors:  A S Mildvan; M Cohn
Journal:  J Biol Chem       Date:  1966-03-10       Impact factor: 5.157

9.  Hereditary hemolytic anemia with hexokinase deficiency. Role of hexokinase in erythrocyte aging.

Authors:  W N Valentine; F A Oski; D E Paglia; M A Baughan; A S Schneider; J L Naiman
Journal:  N Engl J Med       Date:  1967-01-05       Impact factor: 91.245

10.  Investigations of the kinetics of red cell pyruvate kinase in normal individuals and in a patient with pyruvate kinase deficiency.

Authors:  U Wiesmann; O Tönz
Journal:  Nature       Date:  1966-02-05       Impact factor: 49.962

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  20 in total

1.  A monomeric form of pyruvate kinase in human pyruvate kinase deficiency.

Authors:  K Adachi; P K Ghory; T Asakura; E Schwartz
Journal:  Proc Natl Acad Sci U S A       Date:  1977-02       Impact factor: 11.205

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Authors:  J B Wyngaarden
Journal:  Biochem Genet       Date:  1970-02       Impact factor: 1.890

3.  Blood cell enzymes in translocation Down's syndrome.

Authors:  R S Sparkes; M A Baughan
Journal:  Am J Hum Genet       Date:  1969-09       Impact factor: 11.025

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Authors:  E C Gordon-Smith
Journal:  J Clin Pathol Suppl (R Coll Pathol)       Date:  1974

Review 5.  Genetical theory and the "inborn errors of metabolism".

Authors:  H Harris
Journal:  Br Med J       Date:  1970-02-07

6.  An etiological study of neonatal hyperbilirubinaemia.

Authors:  P C Bajpai; P K Misra; M Agarwal; A D Engineer
Journal:  Indian J Pediatr       Date:  1971-11       Impact factor: 1.967

7.  [Transient pyruvate kinase- and glutathione reductase deficiency of erythrocytes in chronic idiopathic infantile pancytopenia].

Authors:  W Schröter
Journal:  Klin Wochenschr       Date:  1970-12-01

8.  Hereditary erythrocyte pyruvate-kinase (PK) deficiency and chronic hemolytic anemia: clinical, genetic and molecular studies in six new Spanish patients.

Authors:  J L Vives-Corrons; J Marie; M A Pujades; A Kahn
Journal:  Hum Genet       Date:  1980       Impact factor: 4.132

9.  Congenital hemolytic anemia in the Basenji dog due to erythrocyte pyruvate kinase deficiency.

Authors:  G P Searcy; D R Miller; J B Tasker
Journal:  Can J Comp Med       Date:  1971-01

10.  Molecular mechanism of erythrocyte pyruvate kinase deficiency.

Authors:  A Kahn; J Marie; C Galand; P Boivin
Journal:  Humangenetik       Date:  1975-10-07
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