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Distinct signaling programs associated with progression of FGFR1 driven leukemia in a mouse model of stem cell leukemia lymphoma syndrome

机译:与FGFR1驱动白血病在茎细胞白血病淋巴瘤综合征的小鼠模型中相关的信号传导程序与FGFR1驱动的白血病相关联

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摘要

Constitutive activation of FGFR1 as a result of chromosome translocations is responsible for the development of a hematopoietic stem cell disorder that progresses to AML. We have developed a syngeneic mouse model of BCR-FGFR1 driven AML and used RNASeq to define gene expression signatures associated with disease progression. The development of the leukemic stem cells (LSC) is associated with a profound downregulation of specific transcription factors that normally maintain stem cell quiescence as well as cell adhesion and motility gene sets related to confinement to the stem cell niche. A prominent feature of the LSCs is the upregulation of genes involved in T-cell function, activation, migration and development. Despite this apparent T-cell priming in the LSCs, however, the majority of these genes are subsequently inactivated in the leukemic blast cells that derive from them. These studies provide insights into the molecular etiology of development and progression of FGFR1 driven AML.
机译:由于染色体易位的结果,FGFR1的组成型激活是造成对AML进行的造血干细胞病症的发展。 我们开发了一种BCR-FGFR1驱动的AML的同胞小鼠模型,并使用RNASEQ来定义与疾病进展相关的基因表达签名。 白血病干细胞(LSC)的发育与通常维持干细胞静脉以及与限制与干细胞Niche相关的细胞粘附和运动基因集的特定转录因子的深度下调相关。 LSCs的突出特征是涉及T细胞功能,激活,迁移和发育的基因的上调。 然而,在LSCs中,尽管存在这一明显的T细胞灌注,但是这些基因中的大部分是在源自它们的白血病爆炸细胞中灭活。 这些研究提供了对FGFR1驱动AML的发育的分子病因和进展的见解。

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