TY - JOUR
T1 - X-linked macrocytic dyserythropoietic anemia in females with an ALAS2 mutation
AU - Sankaran, Vijay G.
AU - Ulirsch, Jacob C.
AU - Tchaikovskii, Vassili
AU - Ludwig, Leif S.
AU - Wakabayashi, Aoi
AU - Kadirvel, Senkottuvelan
AU - Lindsley, R. Coleman
AU - Bejar, Rafael
AU - Shi, Jiahai
AU - Lovitch, Scott B.
AU - Bishop, David F.
AU - Steensma, David P.
PY - 2015/4/1
Y1 - 2015/4/1
N2 - Macrocytic anemia with abnormal erythropoiesis is a common feature of megaloblastic anemias, congenital dyserythropoietic anemias, and myelodysplastic syndromes. Here, we characterized a family with multiple female individuals who have macrocytic anemia. The proband was noted to have dyserythropoiesis and iron overload. After an extensive diagnostic evaluation that did not provide insight into the cause of the disease, whole-exome sequencing of multiple family members revealed the presence of a mutation in the X chromosomal gene ALAS2, which encodes 5′-aminolevulinate synthase 2, in the affected females. We determined that this mutation (Y365C) impairs binding of the essential cofactor pyridoxal 5′-phosphate to ALAS2, resulting in destabilization of the enzyme and consequent loss of function. X inactivation was not highly skewed in wbc from the affected individuals. In contrast, and consistent with the severity of the ALAS2 mutation, there was a complete skewing toward expression of the WT allele in mRNA from reticulocytes that could be recapitulated in primary erythroid cultures. Together, the results of the X inactivation and mRNA studies illustrate how this X-linked dominant mutation in ALAS2 can perturb normal erythropoiesis through cellnonautonomous effects. Moreover, our findings highlight the value of whole-exome sequencing in diagnostically challenging cases for the identification of disease etiology and extension of the known phenotypic spectrum of disease.
AB - Macrocytic anemia with abnormal erythropoiesis is a common feature of megaloblastic anemias, congenital dyserythropoietic anemias, and myelodysplastic syndromes. Here, we characterized a family with multiple female individuals who have macrocytic anemia. The proband was noted to have dyserythropoiesis and iron overload. After an extensive diagnostic evaluation that did not provide insight into the cause of the disease, whole-exome sequencing of multiple family members revealed the presence of a mutation in the X chromosomal gene ALAS2, which encodes 5′-aminolevulinate synthase 2, in the affected females. We determined that this mutation (Y365C) impairs binding of the essential cofactor pyridoxal 5′-phosphate to ALAS2, resulting in destabilization of the enzyme and consequent loss of function. X inactivation was not highly skewed in wbc from the affected individuals. In contrast, and consistent with the severity of the ALAS2 mutation, there was a complete skewing toward expression of the WT allele in mRNA from reticulocytes that could be recapitulated in primary erythroid cultures. Together, the results of the X inactivation and mRNA studies illustrate how this X-linked dominant mutation in ALAS2 can perturb normal erythropoiesis through cellnonautonomous effects. Moreover, our findings highlight the value of whole-exome sequencing in diagnostically challenging cases for the identification of disease etiology and extension of the known phenotypic spectrum of disease.
UR - https://www.scopus.com/pages/publications/84926343896
UR - https://www.scopus.com/record/pubmetrics.uri?eid=2-s2.0-84926343896&origin=recordpage
U2 - 10.1172/JCI78619
DO - 10.1172/JCI78619
M3 - RGC 21 - Publication in refereed journal
C2 - 25705881
SN - 0021-9738
VL - 125
SP - 1665
EP - 1669
JO - Journal of Clinical Investigation
JF - Journal of Clinical Investigation
IS - 4
ER -