Department of Pathology, Division of Molecular and Cellular Pathology, and.
Department of Neurosurgery, University of Alabama at Birmingham, Birmingham, Alabama, USA.
JCI Insight. 2024 Mar 8;9(5):e175053. doi: 10.1172/jci.insight.175053.
Rare diseases are underrepresented in biomedical research, leading to insufficient awareness. Zhu-Tokita-Takenouchi-Kim (ZTTK) syndrome is a rare disease caused by genetic alterations that result in heterozygous loss of function of SON. While patients with ZTTK syndrome live with numerous symptoms, the lack of model organisms hampers our understanding of SON and this complex syndrome. Here, we developed Son haploinsufficiency (Son+/-) mice as a model of ZTTK syndrome and identified the indispensable roles of Son in organ development and hematopoiesis. Son+/- mice recapitulated clinical symptoms of ZTTK syndrome, including growth retardation, cognitive impairment, skeletal abnormalities, and kidney agenesis. Furthermore, we identified hematopoietic abnormalities in Son+/- mice, including leukopenia and immunoglobulin deficiency, similar to those observed in human patients. Surface marker analyses and single-cell transcriptome profiling of hematopoietic stem and progenitor cells revealed that Son haploinsufficiency shifted cell fate more toward the myeloid lineage but compromised lymphoid lineage development by reducing genes required for lymphoid and B cell lineage specification. Additionally, Son haploinsufficiency caused inappropriate activation of erythroid genes and impaired erythropoiesis. These findings highlight the importance of the full gene expression of Son in multiple organs. Our model serves as an invaluable research tool for this rare disease and related disorders associated with SON dysfunction.
罕见病在生物医学研究中代表性不足,导致人们对此认识不足。Zhu-Tokita-Takenouchi-Kim (ZTTK) 综合征是一种由遗传改变引起的罕见疾病,导致 SON 杂合性功能丧失。虽然 ZTTK 综合征患者有许多症状,但缺乏模型生物阻碍了我们对 SON 和这种复杂综合征的理解。在这里,我们开发了 Son 半不足(Son +/-)小鼠作为 ZTTK 综合征的模型,并确定了 Son 在器官发育和造血中的不可或缺作用。Son +/- 小鼠重现了 ZTTK 综合征的临床症状,包括生长迟缓、认知障碍、骨骼异常和肾脏发育不全。此外,我们在 Son +/- 小鼠中发现了造血异常,包括白细胞减少和免疫球蛋白缺乏,类似于人类患者中观察到的情况。造血干细胞和祖细胞的表面标记分析和单细胞转录组谱分析表明,Son 半不足通过减少淋巴样和 B 细胞谱系特化所需的基因,将细胞命运更多地转向髓系,但损害了淋巴系的发育。此外,Son 半不足导致红细胞基因的异常激活和红细胞生成受损。这些发现强调了 Son 在多个器官中完全表达的重要性。我们的模型为这种罕见疾病和与 SON 功能障碍相关的相关疾病提供了宝贵的研究工具。