Ibraham N G, Lutton J D, Hoffman R, Levere R D
J Lab Clin Med. 1985 May;105(5):593-600.
Heme metabolism was examined in developing in vitro erythroid colonies (CFUE) and in bone marrow samples taken directly from four normal donors and four patients with sideroblastic anemia. As previously reported, sideroblastic anemia bone marrow cells grew large numbers of CFUE in methylcellulose culture in the absence or presence of erythropoietin. Maximum activities of delta-aminolevulinic acid synthase (ALAS), ALA dehydratase (ALAD), and 14C-ALA incorporation into heme were achieved in normal marrow CFUE after 8 days of culture, whereas heme oxygenase progressively decreased to low levels of activity during the same period. Assays on nucleated bone marrow cells taken directly from patients revealed that ALAS activity was considerably reduced in idiopathic sideroblastic anemia (IASA) and X-linked sideroblastic anemia (X-SA) bone marrow specimens, whereas the activity increased more than twofold (normal levels) when cells were assayed from 8-day CFUE. In all cases, ALAD activity appeared to be within normal levels. Measurement of heme synthesis revealed that normal levels of 14C-ALA incorporation into heme were achieved in IASA cells but were reduced in X-SA cells. In marked contrast to levels in normal cells, heme oxygenase was found to be significantly elevated (two- to fourfold) in bone marrow cells taken directly from patients with IASA and X-SA. Results from this study demonstrate that IASA and X-SA bone marrow cells have disturbances in ALAS and heme metabolism, and that erythropoiesis (CFUE) can be restored to normal levels when cells are cultured in methylcellulose.
在体外发育的红系集落(CFUE)以及直接取自四名正常供体和四名铁粒幼细胞贫血患者的骨髓样本中检测了血红素代谢。如先前报道,铁粒幼细胞贫血骨髓细胞在有无促红细胞生成素的情况下,均可在甲基纤维素培养基中大量生长CFUE。正常骨髓CFUE在培养8天后,δ-氨基-γ-酮戊酸合酶(ALAS)、ALA脱水酶(ALAD)的最大活性以及14C-ALA掺入血红素的量均达到最高,而在此期间血红素加氧酶活性逐渐降至低水平。对直接取自患者的有核骨髓细胞进行检测发现,特发性铁粒幼细胞贫血(IASA)和X连锁铁粒幼细胞贫血(X-SA)骨髓标本中的ALAS活性显著降低,而从培养8天的CFUE中检测细胞时,该活性增加了两倍多(达到正常水平)。在所有情况下,ALAD活性似乎都在正常水平范围内。血红素合成的检测结果显示,IASA细胞中14C-ALA掺入血红素的量达到正常水平,但X-SA细胞中的量减少。与正常细胞水平形成显著对比的是,直接取自IASA和X-SA患者的骨髓细胞中,血红素加氧酶显著升高(两倍至四倍)。本研究结果表明,IASA和X-SA骨髓细胞在ALAS和血红素代谢方面存在紊乱,并且当细胞在甲基纤维素中培养时,红细胞生成(CFUE)可恢复到正常水平。