Department of Pediatric Oncology/Hematology, Erasmus Medical Center / Sophia Children's Hospital, Zuid-Holland, The Netherlands.
Leukemia. 2012 Jun;26(6):1255-65. doi: 10.1038/leu.2011.388. Epub 2012 Jan 27.
MLL-rearranged acute lymphoblastic leukemia (ALL) in infants is characterized by a poor clinical outcome and resistance to glucocorticoids (for example, prednisone and dexamethasone). As both the response to prednisolone in vitro and prednisone in vivo are predictive for clinical outcome, understanding and overcoming glucocorticoid resistance remains an essential step towards improving prognosis. Prednisolone-induced apoptosis depends on glucocorticoid-evoked Ca(2+) fluxes from the endoplasmic reticulum towards the mitochondria. Here, we demonstrate that in MLL-rearranged infant ALL, over-expression of S100A8 and S100A9 is associated with failure to induce free-cytosolic Ca(2+) and prednisolone resistance. Furthermore, we demonstrate that enforced expression of S100A8/S100A9 in prednisolone-sensitive MLL-rearranged ALL cells, rapidly leads to prednisolone resistance as a result of S100A8/S100A9 mediated suppression of prednisolone-induced free-cytosolic Ca(2+) levels. In addition, the Src kinase inhibitor PP2 markedly sensitized MLL-rearranged ALL cells otherwise resistant to prednisolone, via downregulation of S100A8 and S100A9, which allowed prednisolone-induced Ca(2+) fluxes to reach the mitochondria and trigger apoptosis. On the basis of this novel mechanism of prednisolone resistance, we propose that developing more specific S100A8/S100A9 inhibitors may well be beneficial for prednisolone-resistant MLL-rearranged infant ALL patients.
MLL 重排的婴儿急性淋巴细胞白血病 (ALL) 具有较差的临床结局和对糖皮质激素(例如泼尼松和地塞米松)的耐药性。由于体外对泼尼松龙的反应和体内泼尼松的反应均预测临床结局,因此理解和克服糖皮质激素耐药性仍然是改善预后的重要步骤。泼尼松龙诱导的细胞凋亡取决于内质网向线粒体的糖皮质激素诱导的 Ca2+ 流。在这里,我们证明在 MLL 重排的婴儿 ALL 中,S100A8 和 S100A9 的过度表达与无法诱导游离细胞内 Ca2+ 和泼尼松龙耐药性有关。此外,我们证明在泼尼松龙敏感的 MLL 重排 ALL 细胞中强制表达 S100A8/S100A9,由于 S100A8/S100A9 介导的抑制泼尼松龙诱导的游离细胞内 Ca2+ 水平,会迅速导致泼尼松龙耐药。此外,Src 激酶抑制剂 PP2 通过下调 S100A8 和 S100A9,使 otherwise 对泼尼松龙耐药的 MLL 重排 ALL 细胞对泼尼松龙更加敏感,这使得泼尼松龙诱导的 Ca2+ 流能够到达线粒体并触发细胞凋亡。基于这种新的泼尼松龙耐药机制,我们提出开发更特异的 S100A8/S100A9 抑制剂可能对泼尼松龙耐药的 MLL 重排婴儿 ALL 患者有益。