M. Lakomek et al., MUTATIONS IN THE R-TYPE PYRUVATE-KINASE GENE AND ALTERED ENZYME-KINETIC PROPERTIES IN PATIENTS WITH HEMOLYTIC-ANEMIA DUE TO PYRUVATE-KINASEDEFICIENCY, Annals of hematology, 69(5), 1994, pp. 253-260
The biochemical properties of erythrocyte pyruvate kinase (PK) togethe
r with mutations found in the coding sequence of the R-PK gene in five
patients with severe hemolytic anemia due to PK deficiency are descri
bed. The enzyme variants were designated PK 'Mosul' (homozygote), PK '
Bukarest(1,2)', PK 'Hamburg(1)', PK 'Koln(1)', and PK 'Essen' (compoun
d heterozygote). PK 'Mosul' showed normal positive cooperative substra
te binding, PK 'Bukarest(1,2)' exhibited noncooperative behavior, and
PK 'Hamburg(1)' and PK 'Koln(1)' displayed mixed cooperativity, wherea
s PK 'Essen' was negative cooperative. PK 'Mosul' was found to be homo
zygous for the mutation 1151 ACG to ATG, resulting in an amino acid su
bstitution 384 Thr to Met. In one allele of PK 'Bukarest(1,2)' a singl
e nucleotide substitution GAG-TAG was found at nucleotide 721, causing
a change of 241 Glu to a chain termination codon (PK 'Bukarest(1)').
Additionally, in the second allele of this patient a point mutation at
position 1594 (CGG-TGG) occurs, changing 532 Arg to Trp (PK 'Bukarest
(2)'), Direct sequencing showed the heterozygosity of the patient's mo
ther (PK 'Bukarest(1)'/normal) at position 721 and of the patient's fa
ther (PK 'Bukarest(2)'/normal) at position 1594. A point mutation at p
osition 1529 (CGA-CAA), causing an amino acid substitution 510 Arg-Gln
, was identified in PK 'Hamburg(1)' and PK 'Koln(1)'. The second mutat
ion in these variants was not detected. In PK 'Essen' no mutation in t
he coding sequence was found at all. Screening for the mutation at pos
ition 1529 in further compound heterozygote patients and in normal sub
jects of Western European origin showed that this exchange is a common
mutation responsible for PK deficiency in this population.