生物
丙酮酸激酶缺乏
铝元素
错义突变
外显子
遗传学
丙酮酸激酶
基因
溶血性贫血
突变
基因组
人类基因组
免疫学
糖酵解
酶
生物化学
作者
Harry Lesmana,Lisa Dyer,Xia Li,James Denton,Jenna Griffiths,Satheesh Chonat,Katie G. Seu,Matthew M. Heeney,Kejian Zhang,Robert J. Hopkin,Theodosia A. Kalfa
摘要
Pyruvate kinase deficiency (PKD) is the most frequent red blood cell enzyme abnormality of the glycolytic pathway and the most common cause of hereditary nonspherocytic hemolytic anemia. Over 250 PKLR-gene mutations have been described, including missense/nonsense, splicing and regulatory mutations, small insertions, small and gross deletions, causing PKD and hemolytic anemia of variable severity. Alu retrotransposons are the most abundant mobile DNA sequences in the human genome, contributing to almost 11% of its mass. Alu insertions have been associated with a number of human diseases either by disrupting a coding region or a splice signal. Here, we report on two unrelated Middle Eastern patients, both born from consanguineous parents, with transfusion-dependent hemolytic anemia, where sequence analysis revealed a homozygous insertion of AluYb9 within exon 6 of the PKLR gene, causing precipitous decrease of PKLR RNA levels. This Alu element insertion consists a previously unrecognized mechanism underlying pathogenesis of PKD.
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