Percy M J, McMullin M F, Roques A W, Westwood N B, Acharya J, Hughes A E, Lappin T R, Pearson T C
Department of Haematology, The Queen's University of Belfast, Northern Ireland.
Br J Haematol. 1998 Feb;100(2):407-10. doi: 10.1046/j.1365-2141.1998.00550.x.
Familial erythrocytosis, associated with high haemoglobin levels and low serum erythropoietin (Epo), has been shown to co-segregate with a sequence repeat polymorphism at the 5' region of the erythropoietin receptor (EpoR) in a large Finnish family. We have investigated the cause of erythrocytosis in an English boy. Sequencing of the cytoplasmic region of the EpoR detected a de novo transition mutation of G to A at nucleotide 6002. This mutation resulted in the formation of a stop codon at amino acid 439 with the loss of 70 amino acids from the carboxy terminus. The mutation (G6002A) has arisen independently in a Finnish family and de novo in this English boy. Patients with unexplained erythrocytosis and low serum Epo levels should be investigated for EpoR mutations.
在一个庞大的芬兰家族中,家族性红细胞增多症与高血红蛋白水平和低血清促红细胞生成素(Epo)相关,且已被证明与促红细胞生成素受体(EpoR)5'区域的一个序列重复多态性共分离。我们对一名英国男孩的红细胞增多症病因进行了研究。对EpoR细胞质区域进行测序,在核苷酸6002处检测到一个从G到A的新生转换突变。该突变导致在氨基酸439处形成一个终止密码子,羧基末端丢失70个氨基酸。该突变(G6002A)在芬兰家族中独立出现,在这个英国男孩中为新生突变。对于不明原因的红细胞增多症和低血清Epo水平的患者,应进行EpoR突变检测。