Chromothriptic cure of WHIM syndrome: Implications for bone marrow transplantation.

Rare diseases (Austin, Tex.) Pub Date : 2015-08-11 eCollection Date: 2015-01-01 DOI:10.1080/21675511.2015.1073430
David H McDermott, Ji-Liang Gao, Philip M Murphy
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引用次数: 13

Abstract

We recently reported a 59 year old female, designated WHIM-09, who was born with the rare immunodeficiency disease WHIM syndrome but underwent spontaneous phenotypic reversion as an adult. The causative WHIM mutation CXCR4 (R334X) was absent in her myeloid and erythroid lineage, but present in her lymphoid lineage and in epithelial cells, defining her as a somatic genetic mosaic. Genomic and hematologic analysis revealed chromothripsis (chromosome shattering) on one copy of chromosome 2, which deleted 164 genes including CXCR4 (R334X) in a single haematopoietic stem cell (HSC) (Fig. 1). Experiments in mice indicated that deleting one copy of Cxcr4 is sufficient to confer a selective advantage for engraftment of transplanted HSCs, suggesting a mechanism for clinical cure in WHIM-09. Genome editing may allow autologous transplantation of HSCs lacking one copy of CXCR4 without bone marrow conditioning as a general cure strategy in WHIM syndrome, safely recapitulating the outcome in patient WHIM-09. Figure 1.Chromothripsis (chromosomal shattering) resulted in clinical cure of a patient with a rare immunodeficiency (WHIM syndrome) by deleting the mutant copy of CXCR4.

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色氨酸疗法治疗WHIM综合征:对骨髓移植的影响。
我们最近报道了一名59岁的女性,编号为WHIM-09,她出生时患有罕见的免疫缺陷疾病WHIM综合征,但成年后发生了自发的表型逆转。在她的髓系和红系谱系中没有引起WHIM的突变CXCR4 (R334X),但在她的淋巴系和上皮细胞中存在,这将她定义为体细胞遗传嵌合体。基因组学和血液学分析显示,2号染色体的一个拷贝发生了染色体碎裂(染色体碎裂),在单个造血干细胞(HSC)中删除了164个基因,包括CXCR4 (R334X)(图1)。小鼠实验表明,删除一个CXCR4拷贝足以赋予移植的HSC植入的选择性优势,这表明whac -09的临床治愈机制。基因组编辑可能允许缺乏一个CXCR4拷贝的造血干细胞在没有骨髓调节的情况下进行自体移植,作为WHIM综合征的一般治疗策略,安全地概括了患者whi -09的结果。图1所示。通过删除CXCR4的突变拷贝,染色体碎裂(Chromothripsis)导致了一名罕见免疫缺陷(WHIM综合征)患者的临床治愈。
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