Craven Sarah E, French Dorothy, Ye Weilan, de Sauvage Frederic, Rosenthal Arnon
DNA Way, South San Francisco, CA 94080, USA.
Blood. 2005 May 1;105(9):3528-34. doi: 10.1182/blood-2004-03-1089. Epub 2005 Jan 13.
Myelodysplastic syndrome (MDS) comprises a heterogeneous group of often fatal hematopoietic stem cell disorders for which neither curative nor standard treatment exists. The complex karyotypes and multistep nature of MDS have severely restricted the identification of causative genetic mutations and thus limited insight into new and more effective therapies. Here we describe a zebrafish mutant crimsonless (crs) with a developmental blood defect that closely recapitulates the ineffective hematopoiesis of MDS including anemia, dysplasia, increased blood cell apoptosis, and multilineage cytopenia. By positional cloning, rescue, and morpholino knockdown experiments, we demonstrate that crs encodes a conserved mitochondrial matrix chaperone HSPA9B containing a glycine-to-glutamate substitution within the substrate-binding domain. This mutation compromises mitochondrial function, producing oxidative stress and apoptosis distinctly in blood cells. Thus, we identify an essential role for Hspa9b in hematopoiesis and implicate both loss of HSPA9B specifically and mitochondrial dysfunction generally in the pathogenesis of the MDS.
骨髓增生异常综合征(MDS)是一组异质性的、通常致命的造血干细胞疾病,目前既没有治愈方法,也没有标准治疗方案。MDS复杂的核型和多步骤性质严重限制了致病基因突变的鉴定,从而限制了对新的、更有效治疗方法的深入了解。在这里,我们描述了一种斑马鱼突变体crimsonless(crs),它具有发育性血液缺陷,与MDS无效造血极为相似,包括贫血、发育异常、血细胞凋亡增加和多系血细胞减少。通过定位克隆、拯救和吗啉代敲低实验,我们证明crs编码一种保守的线粒体基质伴侣蛋白HSPA9B,其底物结合域内有甘氨酸到谷氨酸的取代。这种突变损害了线粒体功能,在血细胞中明显产生氧化应激和凋亡。因此,我们确定了Hspa9b在造血过程中的重要作用,并表明HSPA9B的特异性缺失和线粒体功能障碍一般都与MDS的发病机制有关。