Kong Yi, Zhou Suiping, Kihm Anthony J, Katein Anne M, Yu Xiang, Gell David A, Mackay Joel P, Adachi Kazuhiko, Foster-Brown Linda, Louden Calvert S, Gow Andrew J, Weiss Mitchell J
Cell and Molecular Biology Graduate Program, The University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania, USA.
J Clin Invest. 2004 Nov;114(10):1457-66. doi: 10.1172/JCI21982.
Hemoglobin (Hb) A production during red blood cell development is coordinated to minimize the deleterious effects of free alpha- and beta-Hb subunits, which are unstable and cytotoxic. The alpha-Hb-stabilizing protein (AHSP) is an erythroid protein that specifically binds alpha-Hb and prevents its precipitation in vitro, which suggests that it may function to limit free alpha-Hb toxicities in vivo. We investigated this possibility through gene ablation and biochemical studies. AHSP(-/-) erythrocytes contained hemoglobin precipitates and were short-lived. In hematopoietic tissues, erythroid precursors were elevated in number but exhibited increased apoptosis. Consistent with unstable alpha-Hb, AHSP(-/-) erythrocytes contained increased ROS and evidence of oxidative damage. Moreover, purified recombinant AHSP inhibited ROS production by alpha-Hb in solution. Finally, loss of AHSP worsened the phenotype of beta-thalassemia, a common inherited anemia characterized by excess free alpha-Hb. Together, the data support a model in which AHSP binds alpha-Hb transiently to stabilize its conformation and render it biochemically inert prior to Hb A assembly. This function is essential for normal erythropoiesis and, to a greater extent, in beta-thalassemia. Our findings raise the possibility that altered AHSP expression levels could modulate the severity of beta-thalassemia in humans.
红细胞发育过程中血红蛋白(Hb)A的产生是协调进行的,以尽量减少游离α-和β-血红蛋白亚基的有害影响,这些亚基不稳定且具有细胞毒性。α-血红蛋白稳定蛋白(AHSP)是一种红细胞蛋白,它能特异性结合α-血红蛋白并在体外防止其沉淀,这表明它可能在体内发挥限制游离α-血红蛋白毒性的作用。我们通过基因敲除和生化研究来探究这种可能性。AHSP(-/-)红细胞含有血红蛋白沉淀且寿命较短。在造血组织中,红系前体细胞数量增加,但凋亡增加。与不稳定的α-血红蛋白一致,AHSP(-/-)红细胞含有更多的活性氧(ROS)和氧化损伤的证据。此外,纯化的重组AHSP抑制溶液中α-血红蛋白产生ROS。最后,AHSP的缺失使β-地中海贫血的表型恶化,β-地中海贫血是一种常见的遗传性贫血,其特征是游离α-血红蛋白过多。总之,这些数据支持一个模型,即AHSP与α-血红蛋白短暂结合以稳定其构象,并使其在Hb A组装之前在生化上呈惰性。该功能对于正常的红细胞生成至关重要,在更大程度上对于β-地中海贫血也是如此。我们的发现增加了改变AHSP表达水平可能调节人类β-地中海贫血严重程度的可能性。