Department of Hematology and 2 Department of Pathology, Division of Experimental Hematology, St. Jude Children's Research Hospital, Memphis, TN 38105.
J Exp Med. 2014 Apr 7;211(4):701-13. doi: 10.1084/jem.20122727. Epub 2014 Mar 31.
Early T cell precursor acute lymphoblastic leukemia (ETP-ALL) exhibits lymphoid, myeloid, and stem cell features and is associated with a poor prognosis. Whole genome sequencing of human ETP-ALL cases has identified recurrent mutations in signaling, histone modification, and hematopoietic development genes but it remains to be determined which of these abnormalities are sufficient to initiate leukemia. We show that activating mutations in the interleukin-7 receptor identified in human pediatric ETP-ALL cases are sufficient to generate ETP-ALL in mice transplanted with primitive transduced thymocytes from p19(Arf-/-) mice. The cellular mechanism by which these mutant receptors induce ETP-ALL is the block of thymocyte differentiation at the double negative 2 stage at which myeloid lineage and T lymphocyte developmental potential coexist. Analyses of samples from pediatric ETP-ALL cases and our murine ETP-ALL model show uniformly high levels of LMO2 expression, very low to undetectable levels of BCL11B expression, and a relative lack of activating NOTCH1 mutations. We report that pharmacological blockade of Jak-Stat signaling with ruxolitinib has significant antileukemic activity in this ETP-ALL model. This new murine model recapitulates several important cellular and molecular features of ETP-ALL and should be useful to further define novel therapeutic approaches for this aggressive leukemia.
早期 T 细胞前体急性淋巴细胞白血病(ETP-ALL)表现出淋巴样、髓样和干细胞特征,与预后不良相关。对人类 ETP-ALL 病例的全基因组测序已经确定了信号转导、组蛋白修饰和造血发育基因的反复突变,但仍需确定这些异常中哪些足以引发白血病。我们表明,在人类儿科 ETP-ALL 病例中鉴定出的白细胞介素-7 受体的激活突变足以在从 p19(Arf-/-) 小鼠中转化的原始胸腺细胞移植的小鼠中产生 ETP-ALL。这些突变受体诱导 ETP-ALL 的细胞机制是在双阴性 2 期阻止胸腺细胞分化,在该阶段存在髓样谱系和 T 淋巴细胞发育潜能共存。对儿科 ETP-ALL 病例样本和我们的 ETP-ALL 小鼠模型的分析表明,LMO2 的表达水平普遍较高,BCL11B 的表达水平非常低或无法检测到,并且激活 NOTCH1 突变相对缺乏。我们报告称,用鲁索利替尼阻断 Jak-Stat 信号通路具有显著的抗白血病活性在这种 ETP-ALL 模型中。这种新的小鼠模型再现了 ETP-ALL 的几个重要的细胞和分子特征,应该有助于进一步定义针对这种侵袭性白血病的新治疗方法。