Department of Pediatrics, Graduate School of Medicine, Kyoto University, 54 Kawahara-cho, Shogoin, Sakyo-ku, Kyoto, 606-8507, Japan.
Department of Clinical Application, Center for iPS Cell Research and Application, Kyoto University, Kyoto, 606-8507, Japan.
Sci Rep. 2020 Sep 9;10(1):14859. doi: 10.1038/s41598-020-71844-8.
Shwachman-Diamond syndrome (SDS), an autosomal recessive disorder characterized by bone marrow failure, exocrine pancreatic insufficiency, and skeletal abnormalities, is caused by mutations in the Shwachman-Bodian-Diamond syndrome (SBDS) gene, which plays a role in ribosome biogenesis. Although the causative genes of congenital disorders frequently involve regulation of embryogenesis, the role of the SBDS gene in early hematopoiesis remains unclear, primarily due to the lack of a suitable experimental model for this syndrome. In this study, we established induced pluripotent stem cells (iPSCs) from patients with SDS (SDS-iPSCs) and analyzed their in vitro hematopoietic and endothelial differentiation potentials. SDS-iPSCs generated hematopoietic and endothelial cells less efficiently than iPSCs derived from healthy donors, principally due to the apoptotic predisposition of KDRCD34 common hemoangiogenic progenitors. By contrast, forced expression of SBDS gene in SDS-iPSCs or treatment with a caspase inhibitor reversed the deficiency in hematopoietic and endothelial development, and decreased apoptosis of their progenitors, mainly via p53-independent mechanisms. Patient-derived iPSCs exhibited the hematological abnormalities associated with SDS even at the earliest hematopoietic stages. These findings will enable us to dissect the pathogenesis of multiple disorders associated with ribosomal dysfunction.
Shwachman-Diamond 综合征(SDS)是一种常染色体隐性遗传病,其特征为骨髓衰竭、外分泌胰腺功能不全和骨骼异常,由 Shwachman-Bodian-Diamond 综合征(SBDS)基因突变引起,该基因在核糖体生物发生中起作用。尽管先天性疾病的致病基因常涉及胚胎发生的调节,但 SBDS 基因在早期造血中的作用尚不清楚,主要是因为缺乏该综合征的合适实验模型。在这项研究中,我们从 SDS 患者中建立了诱导多能干细胞(iPSCs)(SDS-iPSCs),并分析了它们在体外造血和内皮分化中的潜力。SDS-iPSCs 的造血和内皮细胞生成效率低于来自健康供体的 iPSCs,主要是由于 KDRCD34 共同造血内皮祖细胞的凋亡倾向。相比之下,SBDS 基因在 SDS-iPSCs 中的强制表达或使用半胱天冬酶抑制剂逆转了造血和内皮发育的缺陷,并减少了其祖细胞的凋亡,主要是通过 p53 非依赖性机制。患者来源的 iPSCs 甚至在最早的造血阶段就表现出与 SDS 相关的血液学异常。这些发现将使我们能够剖析与核糖体功能障碍相关的多种疾病的发病机制。