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Btk/Slp65 缺陷型小鼠中的前 B 细胞白血病的发生与持续的 V(D)J 重组活性无关。

Pre-B-cell leukemias in Btk/Slp65-deficient mice arise independently of ongoing V(D)J recombination activity.

机构信息

Department of Pulmonary Medicine, Erasmus MC Rotterdam, Rotterdam, The Netherlands.

出版信息

Leukemia. 2011 Jan;25(1):48-56. doi: 10.1038/leu.2010.246. Epub 2010 Oct 29.

Abstract

The adapter protein Slp65 and Bruton's tyrosine kinase (Btk) are key components of the precursor-B (pre-B) cell receptor (pre-BCR) signaling pathway. Slp65-deficient mice spontaneously develop pre-B-cell leukemia, expressing high levels of the pre-BCR on their cell surface. As leukemic Slp65-deficient pre-B cells express the recombination activating genes (Rag)1 and Rag2, and manifest ongoing immunoglobulin (Ig) light-chain rearrangement, it has been hypothesized that deregulated recombinase activity contributes to malignant transformation. In this report, we investigated whether Rag-induced DNA damage is involved in oncogenic transformation of Slp65-deficient B cells. We employed Btk/Slp65 double-deficient mice carrying an autoreactive 3-83μδ BCR transgene. When developing B cells in their bone marrow express this BCR, the V(D)J recombination machinery will be activated, allowing for secondary Ig light-chain gene rearrangements to occur. This phenomenon, called receptor editing, will rescue autoreactive B cells from apoptosis. We observed that 3-83μδ transgenic Btk/Slp65 double-deficient mice developed B-cell leukemias expressing both the 3-83μδ BCR and the pre-BCR components λ5/VpreB. Importantly, such leukemias were found at similar frequencies in mice concomitantly deficient for Rag1 or the non-homologous end-joining factor DNA-PKcs. We therefore conclude that malignant transformation of Btk/Slp65 double-deficient pre-B cells is independent of deregulated V(D)J recombination activity.

摘要

衔接蛋白 Slp65 和布鲁顿酪氨酸激酶(Btk)是前 B 细胞受体(pre-BCR)信号通路的关键组成部分。Slp65 缺陷型小鼠自发发展为前 B 细胞白血病,其细胞表面表达高水平的 pre-BCR。由于白血病 Slp65 缺陷型前 B 细胞表达重组激活基因(Rag)1 和 Rag2,并表现出持续的免疫球蛋白(Ig)轻链重排,因此有人假设失调的重组酶活性有助于恶性转化。在本报告中,我们研究了 Rag 诱导的 DNA 损伤是否参与 Slp65 缺陷型 B 细胞的致癌转化。我们使用携带自身反应性 3-83μδ BCR 转基因的 Btk/Slp65 双缺陷型小鼠。当骨髓中发育的 B 细胞表达这种 BCR 时,V(D)J 重组机制将被激活,允许发生二次 Ig 轻链基因重排。这种现象称为受体编辑,可使自身反应性 B 细胞免于凋亡。我们观察到,表达 3-83μδ BCR 和 pre-BCR 成分 λ5/VpreB 的 3-83μδ 转基因 Btk/Slp65 双缺陷型小鼠发展为 B 细胞白血病。重要的是,在同时缺乏 Rag1 或非同源末端连接因子 DNA-PKcs 的小鼠中,以相似的频率发现了这种白血病。因此,我们得出结论,Btk/Slp65 双缺陷型前 B 细胞的恶性转化不依赖于失调的 V(D)J 重组活性。

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