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Human chronic lymphocytic leukemia modeled in mouse by targeted TCL1 expression

机译:通过靶向TCL1表达在小鼠中模拟人慢性淋巴细胞性白血病

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摘要

The TCL1 gene at 14q32.1 is involved in chromosomal translocations and inversions in mature T cell leukemias. These leukemias are classified either as T prolymphocytic leukemias, which occur very late in life, or as T chronic lymphocytic leukemias, which often arise in patients with ataxia telangiectasia (AT) at a young age. In transgenic animals, the deregulated expression of TCL1 leads to mature T cell leukemia, demonstrating the role of TCL1 in the initiation of malignant transformation in T cell neoplasia. Expression of high levels of Tcl1 have also been found in a variety of human tumor-derived B cell lines ranging from pre-B cell to mature B cell. Here we describe the phenotype of transgenic mice, Eμ-TCL1, established with TCL1 under the control of a VH promoter-IgH-Eμ enhancer to target TCL1 expression to immature and mature B cells. Flow cytometric analysis reveals a markedly expanded CD5+ population in the peritoneal cavity of Eμ-TCL1 mice starting at 2 mo of age that becomes evident in the spleen by 3–5 mo and in the bone marrow by 5–8 mo. Analysis of Ig gene rearrangements indicates monoclonality or oligoclonality in these populations, suggesting a preneoplastic expansion of CD5+ B cell clones, with the elder mice eventually developing a chronic lymphocytic leukemia (CLL)-like disorder resembling human B-CLL. Our findings provide an animal model for CLL, the most common human leukemia, and demonstrate that deregulation of the Tcl1 pathway plays a crucial role in CLL pathogenesis.
机译:14q32.1处的TCL1基因参与成熟T细胞白血病的染色体易位和倒位。这些白血病既可以归类为T淋巴细胞性白血病(发生时间很晚),也可以归类为T慢性淋巴细胞性白血病,通常在年轻时患有共济失调性毛细血管扩张症(AT)的患者中出现。在转基因动物中,TCL1的表达失调导致成熟的T细胞白血病,这表明TCL1在T细胞瘤形成的恶性转化中起着重要作用。还已经在从前B细胞到成熟B细胞的各种人肿瘤来源的B细胞系中发现了高水平的Tcl1的表达。在这里,我们描述了在VH启动子-IgH-Eμ增强子的控制下,用TCL1建立的转基因小鼠Eμ-TCL1的表型,将TCL1表达靶向未成熟和成熟的B细胞。流式细胞仪分析显示,Eμ-TCL1小鼠腹膜腔的CD5 + 种群从2个月大开始显着扩大,在3到5个月的脾脏和5个月的骨髓中明显–8个月。对Ig基因重排的分析表明,这些人群中存在单克隆或寡克隆现象,表明CD5 + B细胞克隆发生了肿瘤前扩张,老年小鼠最终发展出类似于人B的慢性淋巴细胞性白血病(CLL)样疾病-CLL。我们的发现为最常见的人类白血病CLL提供了动物模型,并证明Tcl1通路的失控在CLL发病机理中起着至关重要的作用。

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