Department of Pediatric Oncology/Hematology, Erasmus Medical Center-Sophia Children's Hospital, Rotterdam, The Netherlands.
Blood. 2010 Feb 4;115(5):1018-25. doi: 10.1182/blood-2009-02-205963. Epub 2009 Dec 4.
MLL-rearranged acute lymphoblastic leukemia (ALL) represents an unfavorable type of leukemia that often is highly resistant to glucocorticoids such as prednisone and dexamethasone. Because response to prednisone largely determines clinical outcome of pediatric patients with ALL, overcoming resistance to this drug may be an important step toward improving prognosis. Here, we show how gene expression profiling identifies high-level MCL-1 expression to be associated with prednisolone resistance in MLL-rearranged infant ALL, as well as in more favorable types of childhood ALL. To validate this observation, we determined MCL-1 expression with quantitative reverse transcription-polymerase chain reaction in a cohort of MLL-rearranged infant ALL and pediatric noninfant ALL samples and confirmed that high-level MCL-1 expression is associated with prednisolone resistance in vitro. In addition, MCL-1 expression appeared to be significantly higher in MLL-rearranged infant patients who showed a poor response to prednisone in vivo compared with prednisone good responders. Finally, down-regulation of MCL-1 in prednisolone-resistant MLL-rearranged leukemia cells by RNA interference, to some extent, led to prednisolone sensitization. Collectively, our findings suggest a potential role for MCL-1 in glucocorticoid resistance in MLL-rearranged infant ALL, but at the same time strongly imply that high-level MCL-1 expression is not the sole mechanism providing resistance to these drugs.
MLL 重排急性淋巴细胞白血病 (ALL) 是一种预后不良的白血病类型,通常对泼尼松和地塞米松等糖皮质激素高度耐药。由于对泼尼松的反应在很大程度上决定了儿童 ALL 患者的临床预后,因此克服对这种药物的耐药性可能是改善预后的重要步骤。在这里,我们展示了基因表达谱如何确定高水平的 MCL-1 表达与 MLL 重排婴儿 ALL 以及更有利的儿童 ALL 类型的泼尼松耐药有关。为了验证这一观察结果,我们使用定量逆转录-聚合酶链反应在 MLL 重排婴儿 ALL 和儿科非婴儿 ALL 样本中确定了 MCL-1 的表达,并证实高水平的 MCL-1 表达与体外泼尼松耐药有关。此外,与泼尼松反应良好的患者相比,体内对泼尼松反应不佳的 MLL 重排婴儿患者的 MCL-1 表达似乎明显更高。最后,通过 RNA 干扰下调泼尼松耐药性 MLL 重排白血病细胞中的 MCL-1,在一定程度上导致泼尼松敏感性增加。总的来说,我们的发现表明 MCL-1 在 MLL 重排婴儿 ALL 中的糖皮质激素耐药中可能发挥作用,但同时强烈暗示高水平的 MCL-1 表达不是提供这些药物耐药的唯一机制。