Pinho Flavia Oliveira, de Albuquerque Dulcineia Martins, Olalla Saad Sara Teresinha, Costa Fernando Ferreira
Center of Hematology and Hemotherapy, State University at Campinas, São Paulo, Brazil.
Exp Hematol. 2008 Mar;36(3):265-72. doi: 10.1016/j.exphem.2007.11.003. Epub 2008 Jan 7.
alpha-Hemoglobin stabilizing protein (AHSP) binds alpha-hemoglobin (Hb), avoiding its precipitation and its pro-oxidant activity. In the presence of betaHb, the alphaHb-AHSP complex is dismembered and betaHb displaces AHSP to generate the quaternary structure of Hb. The relationship between Hb formation and alterations in AHSP expression, which may affect human erythropoiesis, has not yet been described in human cells. Hence, in this study, we examined the effects of AHSP knockdown in hemin-induced K562 and erythropoietin-induced CD34(+) cells with particular reference to cellular aspects and gene expression.
Short-hairpin RNA expression vectors aimed at the AHSP mRNA target sequence were cloned and transfected into K562 and CD34(+) cells. K562 and CD34(+) cells were stimulated to erythroid differentiation. Cells were examined in terms of gene expression using quantitative real-time polymerase chain reaction; reactive oxygen species (ROS) production, apoptosis, and Hb production through flow cytometry assays; and immunofluorescence assays for globin chains.
RNA interference-mediated knockdown of AHSP expression resulted in considerable alphaHb precipitation, as well as in a significant decrease in HbF formation. AHSP-knockdown cells demonstrated an increased ROS production and increased rate of apoptosis.
These findings strengthen the hypothesis that AHSP stabilizes the alphaHb chain, avoiding its precipitation and its ability to generate ROS, which implicate in cell death. Moreover, data indicate that AHSP may be highly significant for human hemoglobin formation and suggest that AHSP is a key chaperone protein during human erythropoiesis.
α-血红蛋白稳定蛋白(AHSP)与α-血红蛋白(Hb)结合,避免其沉淀及其促氧化活性。在βHb存在的情况下,αHb-AHSP复合物会解体,βHb取代AHSP以生成Hb的四级结构。Hb形成与AHSP表达改变之间的关系(这可能影响人类红细胞生成)在人类细胞中尚未见报道。因此,在本研究中,我们研究了AHSP基因敲低对血红素诱导的K562细胞和促红细胞生成素诱导的CD34(+)细胞的影响,特别关注细胞层面和基因表达。
针对AHSP mRNA靶序列的短发夹RNA表达载体被克隆并转染到K562和CD34(+)细胞中。刺激K562和CD34(+)细胞向红系分化。使用定量实时聚合酶链反应检测细胞的基因表达;通过流式细胞术检测活性氧(ROS)产生、细胞凋亡和Hb产生;并进行珠蛋白链的免疫荧光检测。
RNA干扰介导的AHSP表达敲低导致大量αHb沉淀,以及HbF形成显著减少。AHSP敲低的细胞表现出ROS产生增加和凋亡率增加。
这些发现强化了这样的假设,即AHSP稳定αHb链,避免其沉淀及其产生活性氧的能力,而活性氧与细胞死亡有关。此外,数据表明AHSP可能对人类血红蛋白形成非常重要,并表明AHSP是人类红细胞生成过程中的关键伴侣蛋白。