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PTPN11 突变在增强诱导多能干细胞的造血分化潜能中的重要作用 : 青少年骨髓单核细胞白血病个案报告。

Essential role of PTPN11 mutation in enhanced haematopoietic differentiation potential of induced pluripotent stem cells of juvenile myelomonocytic leukaemia.

机构信息

Department of Paediatrics, Shinshu University School of Medicine, Matsumoto, Japan.

Department of Health and Medical Sciences, Graduate School of Medicine, Shinshu University, Matsumoto, Japan.

出版信息

Br J Haematol. 2019 Oct;187(2):163-173. doi: 10.1111/bjh.16060. Epub 2019 Jun 20.

Abstract

We established mutated and non-mutated induced pluripotent stem cell (iPSC) clones from a patient with PTPN11 (c.226G>A)-mutated juvenile myelomonocytic leukaemia (JMML). Both types of iPSCs fulfilled the quality criteria. Mutated iPSC colonies generated significantly more CD34 and CD34 CD45 cells compared to non-mutated iPSC colonies in a culture coated with irradiated AGM-S3 cells to which four growth factors were added sequentially or simultaneously. The haematopoietic differentiation potential of non-mutated JMML iPSC colonies was similar to or lower than that of iPSC colonies from a healthy individual. The PTPN11 mutation coexisted with the OSBP2 c.389C>T mutation. Zinc-finger nuclease-mediated homologous recombination revealed that correction of PTPN11 mutation in iPSCs with PTPN11 and OSBP2 mutations resulted in reduced CD34 cell generation to a level similar to that obtained with JMML iPSC colonies with the wild-type of both genes, and interestingly, to that obtained with normal iPSC colonies. Transduction of the PTPN11 mutation into JMML iPSCs with the wild-type of both genes increased CD34 cell production to a level comparable to that obtained with JMML iPSC colonies harbouring the two genetic mutations. Thus, PTPN11 mutation may be the most essential abnormality to confer an aberrant haematopoietic differentiation potential in this disorder.

摘要

我们从一名患有 PTPN11(c.226G>A)突变的幼年型粒单核细胞白血病(JMML)患者中建立了突变和非突变诱导多能干细胞(iPSC)克隆。两种类型的 iPSC 都符合质量标准。在涂有辐照的 AGM-S3 细胞的培养物中,突变的 iPSC 集落比非突变的 iPSC 集落生成更多的 CD34 和 CD34 CD45 细胞,该培养物中添加了四种生长因子依次或同时添加。非突变 JMML iPSC 集落的造血分化潜力与健康个体的 iPSC 集落相似或更低。PTPN11 突变与 OSBP2 c.389C>T 突变共存。锌指核酸酶介导的同源重组表明,在同时具有 PTPN11 和 OSBP2 突变的 iPSC 中纠正 PTPN11 突变会导致 CD34 细胞生成减少到与具有两种基因野生型的 JMML iPSC 集落相似的水平,有趣的是,与正常 iPSC 集落相似的水平。将 PTPN11 突变转导到具有两种基因野生型的 JMML iPSC 中会增加 CD34 细胞的产生,使其达到与携带两种基因突变的 JMML iPSC 集落相当的水平。因此,PTPN11 突变可能是赋予该疾病异常造血分化潜能的最关键异常。

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