Iron status in patients with pyruvate kinase deficiency: neonatal hyperferritinaemia associated with a novel frameshift deletion in the PKLR gene (p.Arg518fs), and low hepcidin to ferritin ratios

Summary Pyruvate kinase (PK) deficiency is an iron‐loading anaemia characterized by chronic haemolysis, ineffective erythropoiesis and a requirement for blood transfusion in most cases. We studied 11 patients from 10 unrelated families and found nine different disease‐causing PKLR mutations. Two of...

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Veröffentlicht in:British journal of haematology 2014-05, Vol.165 (4), p.556-563
Hauptverfasser: Mojzikova, Renata, Koralkova, Pavla, Holub, Dusan, Zidova, Zuzana, Pospisilova, Dagmar, Cermak, Jaroslav, Striezencova Laluhova, Zuzana, Indrak, Karel, Sukova, Martina, Partschova, Martina, Kucerova, Jana, Horvathova, Monika, Divoky, Vladimir
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Sprache:eng
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Zusammenfassung:Summary Pyruvate kinase (PK) deficiency is an iron‐loading anaemia characterized by chronic haemolysis, ineffective erythropoiesis and a requirement for blood transfusion in most cases. We studied 11 patients from 10 unrelated families and found nine different disease‐causing PKLR mutations. Two of these mutations ‐ the point mutation c.878A>T (p.Asp293Val) and the frameshift deletion c.1553delG (p.(Arg518Leufs*12)) ‐ have not been previously described in the literature. This frameshift deletion was associated with an unusually severe phenotype involving neonatal hyperferritinaemia that is not typical of PK deficiency. No disease‐causing mutations in genes associated with haemochromatosis could be found. Inappropriately low levels of hepcidin with respect to iron loading were detected in all PK‐deficient patients with increased ferritin, confirming the predominant effect of accelerated erythropoiesis on hepcidin production. Although the levels of a putative hepcidin suppressor, growth differentiation factor‐15, were increased in PK‐deficient patients, no negative correlation with hepcidin was found. This result indicates the existence of another as‐yet unidentified erythroid regulator of hepcidin synthesis in PK deficiency.
ISSN:0007-1048
1365-2141
DOI:10.1111/bjh.12779