Yu Xiang, Kong Yi, Dore Louis C, Abdulmalik Osheiza, Katein Anne M, Zhou Suiping, Choi John K, Gell David, Mackay Joel P, Gow Andrew J, Weiss Mitchell J
Cell and Molecular Biology Graduate Program, University of Pennsylvania School of Medicine, Philadelphia, PA, USA.
J Clin Invest. 2007 Jul;117(7):1856-65. doi: 10.1172/JCI31664.
Erythrocyte precursors produce abundant alpha- and beta-globin proteins, which assemble with each other to form hemoglobin A (HbA), the major blood oxygen carrier. alphaHb-stabilizing protein (AHSP) binds free alpha subunits reversibly to maintain their structure and limit their ability to generate reactive oxygen species. Accordingly, loss of AHSP aggravates the toxicity of excessive free alpha-globin caused by beta-globin gene disruption in mice. Surprisingly, we found that AHSP also has important functions when free alpha-globin is limited. Thus, compound mutants lacking both Ahsp and 1 of 4 alpha-globin genes (genotype Ahsp(-/-)alpha-globin*(alpha/alphaalpha)) exhibited more severe anemia and Hb instability than mice with either mutation alone. In vitro, recombinant AHSP promoted folding of newly translated alpha-globin, enhanced its refolding after denaturation, and facilitated its incorporation into HbA. Moreover, in erythroid precursors, newly formed free alpha-globin was destabilized by loss of AHSP. Therefore, in addition to its previously defined role in detoxification of excess alpha-globin, AHSP also acts as a molecular chaperone to stabilize nascent alpha-globin for HbA assembly. Our findings illustrate what we believe to be a novel adaptive mechanism by which a specialized cell coordinates high-level production of a multisubunit protein and protects against various synthetic imbalances.
红细胞前体细胞会产生大量的α-和β-珠蛋白,它们相互组装形成血红蛋白A(HbA),这是血液中的主要氧气载体。α-珠蛋白稳定蛋白(AHSP)与游离的α亚基可逆性结合,以维持其结构并限制其产生活性氧的能力。因此,在小鼠中,AHSP的缺失会加剧β-珠蛋白基因破坏导致的过量游离α-珠蛋白的毒性。令人惊讶的是,我们发现当游离α-珠蛋白受到限制时,AHSP也具有重要功能。因此,同时缺失Ahsp和4个α-珠蛋白基因中的1个的复合突变体(基因型Ahsp(-/-)α-珠蛋白*(α/αα))比单独具有任何一种突变的小鼠表现出更严重的贫血和血红蛋白不稳定性。在体外,重组AHSP促进新翻译的α-珠蛋白的折叠,增强其变性后的复性,并促进其掺入HbA。此外,在红细胞前体细胞中,新形成的游离α-珠蛋白因AHSP的缺失而变得不稳定。因此,除了其先前确定的在过量α-珠蛋白解毒中的作用外,AHSP还作为分子伴侣来稳定新生的α-珠蛋白以进行HbA组装。我们的发现阐明了一种我们认为是新颖的适应性机制,通过该机制,一种特化细胞协调多亚基蛋白的高水平产生并防止各种合成失衡。