Volanakis Emmanuel J, Williams Richard T, Sherr Charles J
Department of Oncology, St Jude Children's Research Hospital, Memphis, TN 38105, USA.
Blood. 2009 Nov 12;114(20):4451-9. doi: 10.1182/blood-2009-07-233346. Epub 2009 Sep 16.
Frequent hallmarks of T-cell acute lymphoblastic leukemia (T-ALL) include aberrant NOTCH signaling and deletion of the CDKN2A locus, which contains 2 closely linked tumor suppressor genes (INK4A and ARF). When bone marrow cells or thymocytes transduced with a vector encoding the constitutively activated intracellular domain of Notch1 (ICN1) are expanded ex vivo under conditions that support T-cell development, cultured progenitors rapidly induce CD4+/CD8+ T-ALLs after infusion into healthy syngeneic mice. Under these conditions, enforced ICN1 expression also drives formation of T-ALLs in unconditioned CD-1 nude mice, bypassing any requirements for thymic maturation. Retention of Arf had relatively modest activity in suppressing the formation of T-ALLs arising from bone marrow-derived ICN1+ progenitors in which the locus is epigenetically silenced, and all resulting Arf (+/+) tumors failed to express the p19(Arf) protein. In striking contrast, retention of Arf in thymocyte-derived ICN1+ donor cells significantly delayed disease onset and suppressed the penetrance of T-ALL. Use of cultured thymocyte-derived donor cells expressing a functionally null Arf-GFP knock-in allele confirmed that ICN1 signaling can induce Arf expression in vivo. Arf activation by ICN1 in T cells thereby provides stage-specific tumor suppression but also a strong selective pressure for deletion of the locus in T-ALL.
T细胞急性淋巴细胞白血病(T-ALL)的常见特征包括NOTCH信号异常以及CDKN2A基因座缺失,该基因座包含两个紧密相连的肿瘤抑制基因(INK4A和ARF)。当用编码组成型激活的Notch1细胞内结构域(ICN1)的载体转导的骨髓细胞或胸腺细胞在支持T细胞发育的条件下进行离体扩增时,培养的祖细胞在注入健康的同基因小鼠后会迅速诱导产生CD4+/CD8+ T-ALL。在这些条件下,强制表达ICN1也能在未经预处理的CD-1裸鼠中驱动T-ALL的形成,绕过胸腺成熟的任何要求。在骨髓来源的ICN1+祖细胞中,Arf的保留在抑制T-ALL形成方面活性相对较弱,其中该基因座在表观遗传上被沉默,所有产生的Arf(+/+)肿瘤均未能表达p19(Arf)蛋白。与之形成鲜明对比的是,在胸腺细胞来源的ICN1+供体细胞中保留Arf可显著延迟疾病发作并抑制T-ALL的发生率。使用表达功能缺失的Arf-GFP敲入等位基因的培养胸腺细胞来源的供体细胞证实,ICN1信号可在体内诱导Arf表达。因此,ICN1在T细胞中激活Arf可提供阶段特异性的肿瘤抑制作用,但同时也为T-ALL中该基因座的缺失提供了强大的选择压力。