Department of Medical Sciences, University of Turin, School of Medicine, Turin, Italy.
1] Department of Medical Sciences, University of Turin, School of Medicine, Turin, Italy [2] Department of Hematology, Dubrava University Hospital, Zagreb, Croatia.
Leukemia. 2014 May;28(5):1060-70. doi: 10.1038/leu.2013.319. Epub 2013 Oct 30.
The purpose of this study was to compare the expression and function of NOTCH1 in chronic lymphocytic leukemia (CLL) patients harboring a wild-type (WT) or mutated NOTCH1 gene. NOTCH1 mRNA and surface protein expression levels were independent of the NOTCH1 gene mutational status, consistent with the requirement for NOTCH1 signaling in this leukemia. However, compared with NOTCH1-WT CLL, mutated cases displayed biochemical and transcriptional evidence of an intense activation of the NOTCH1 pathway. In vivo, expression and activation of NOTCH1 was highest in CLL cells from the lymph nodes as confirmed by immunohistochemistry. In vitro, the NOTCH1 pathway was rapidly downregulated, suggesting that signaling relies upon micro-environmental interactions even in NOTCH1-mutated cases. Accordingly, co-culture of Jagged1(+) (the NOTCH1 ligand) nurse-like cells with autologous CLL cells sustained NOTCH1 activity over time and mediated CLL survival and resistance against pro-apoptotic stimuli, both abrogated when NOTCH1 signaling was pharmacologically switched off. Together, these results show that NOTCH1 mutations have stabilizing effects on the NOTCH1 pathway in CLL. Furthermore, micro-environmental interactions appear critical in activating the NOTCH1 pathway both in WT and mutated patients. Finally, NOTCH1 signals may create conditions that favor drug resistance, thus making NOTCH1 a potential molecular target in CLL.
本研究旨在比较表达和功能的 NOTCH1 在慢性淋巴细胞白血病 (CLL) 患者携带野生型 (WT) 或突变的 NOTCH1 基因。NOTCH1 mRNA 和表面蛋白表达水平独立于 NOTCH1 基因的突变状态,符合 NOTCH1 信号通路的要求在这种白血病。然而,与 NOTCH1-WT CLL 相比,突变病例显示出强烈的 NOTCH1 通路激活的生化和转录证据。在体内,NOTCH1 的表达和激活是最高的 CLL 细胞从淋巴结证实免疫组织化学。体外,NOTCH1 通路被迅速下调,表明信号甚至在 NOTCH1 突变的情况下依赖于微环境相互作用。因此,Jagged1(+)(NOTCH1 配体)与自体 CLL 细胞共培养的护理样细胞随着时间的推移维持 NOTCH1 活性,并介导 CLL 存活和抵抗促凋亡刺激,当 NOTCH1 信号被药物阻断时,这两种作用都被消除。总之,这些结果表明 NOTCH1 突变对 CLL 中的 NOTCH1 通路具有稳定作用。此外,微环境相互作用在激活 WT 和突变患者的 NOTCH1 通路方面似乎至关重要。最后,NOTCH1 信号可能会创造有利于耐药性的条件,从而使 NOTCH1 成为 CLL 的潜在分子靶点。