Centre for Biomedical Research (CBMR), University of Algarve, Faro, Portugal.
Department of Biomedical Sciences and Medicine, University of Algarve, Faro, Portugal.
Br J Haematol. 2015 Dec;171(5):736-51. doi: 10.1111/bjh.13760. Epub 2015 Oct 12.
Lymphotoxin-mediated activation of the lymphotoxin-β receptor (LTβR; LTBR) has been implicated in cancer, but its role in T-cell acute lymphoblastic leukaemia (T-ALL) has remained elusive. Here we show that the genes encoding lymphotoxin (LT)-α and LTβ (LTA, LTB) are expressed in T-ALL patient samples, mostly of the TAL/LMO molecular subtype, and in the TEL-JAK2 transgenic mouse model of cortical/mature T-ALL (Lta, Ltb). In these mice, expression of Lta and Ltb is elevated in early stage T-ALL. Surface LTα1 β2 protein is expressed in primary mouse T-ALL cells, but only in the absence of microenvironmental LTβR interaction. Indeed, surface LT expression is suppressed in leukaemic cells contacting Ltbr-expressing but not Ltbr-deficient stromal cells, both in vitro and in vivo, thus indicating that dynamic surface LT expression in leukaemic cells depends on interaction with its receptor. Supporting the notion that LT signalling plays a role in T-ALL, inactivation of Ltbr results in a significant delay in TEL-JAK2-induced leukaemia onset. Moreover, young asymptomatic TEL-JAK2;Ltbr(-/-) mice present markedly less leukaemic thymocytes than age-matched TEL-JAK2;Ltbr(+/+) mice and interference with LTβR function at this early stage delayed T-ALL development. We conclude that LT expression by T-ALL cells activates LTβR signalling in thymic stromal cells, thus promoting leukaemogenesis.
淋巴毒素(Lymphotoxin,LT)介导的淋巴毒素-β 受体(Lymphotoxin-β receptor,LTβR;又称为 TNFRSF3)的激活与癌症有关,但它在 T 细胞急性淋巴细胞白血病(T-cell acute lymphoblastic leukemia,T-ALL)中的作用仍然难以捉摸。在这里,我们发现编码淋巴毒素(Lymphotoxin,LT)-α 和 LTβ(Lymphotoxin-α,LTA;Lymphotoxin-β,LTB)的基因在 T-ALL 患者样本中表达,这些样本主要是 TAL/LMO 分子亚型,并且在 TEL-JAK2 转基因小鼠皮质/成熟 T-ALL 模型中(Lta,Ltb)。在这些小鼠中,Lta 和 Ltb 的表达在早期 T-ALL 中升高。在原发性小鼠 T-ALL 细胞中表达表面 LTα1β2 蛋白,但仅在不存在微环境 LTβR 相互作用的情况下。事实上,在体外和体内,与表达 Ltbr 的但不与 Ltbr 缺陷的基质细胞接触的白血病细胞中,表面 LT 表达受到抑制,这表明白血病细胞中动态的表面 LT 表达取决于与其受体的相互作用。支持 LT 信号在 T-ALL 中发挥作用的观点,Ltbr 的失活导致 TEL-JAK2 诱导的白血病发病显著延迟。此外,年轻无症状的 TEL-JAK2;Ltbr(-/-)小鼠比年龄匹配的 TEL-JAK2;Ltbr(+/+)小鼠的白血病性胸腺细胞明显减少,并且在早期阶段干扰 LTβR 功能会延迟 T-ALL 的发展。我们得出的结论是,T-ALL 细胞的 LT 表达激活了胸腺基质细胞中的 LTβR 信号,从而促进了白血病的发生。