Franciosa G, Diluvio G, Gaudio F Del, Giuli M V, Palermo R, Grazioli P, Campese A F, Talora C, Bellavia D, D'Amati G, Besharat Z M, Nicoletti C, Siebel C W, Choy L, Rustighi A, Sal G Del, Screpanti I, Checquolo S
Laboratory of Molecular Pathology, Department of Molecular Medicine, Sapienza University, Rome, Italy.
Center for Life Nano Science@Sapienza, Istituto Italiano di Tecnologia, Rome, Italy.
Oncogene. 2016 Sep 8;35(36):4741-51. doi: 10.1038/onc.2016.5. Epub 2016 Feb 15.
Deregulated Notch signaling is associated with T-cell Acute Lymphoblastic Leukemia (T-ALL) development and progression. Increasing evidence reveals that Notch pathway has an important role in the invasion ability of tumor cells, including leukemia, although the underlying molecular mechanisms remain mostly unclear. Here, we show that Notch3 is a novel target protein of the prolyl-isomerase Pin1, which is able to regulate Notch3 protein processing and to stabilize the cleaved product, leading to the increased expression of the intracellular domain (N3IC), finally enhancing Notch3-dependent invasiveness properties. We demonstrate that the combined inhibition of Notch3 and Pin1 in the Notch3-overexpressing human leukemic TALL-1 cells reduces their high invasive potential, by decreasing the expression of the matrix metalloprotease MMP9. Consistently, Pin1 depletion in a mouse model of Notch3-induced T-ALL, by reducing N3IC expression and signaling, impairs the expansion/invasiveness of CD4(+)CD8(+) DP cells in peripheral lymphoid and non-lymphoid organs. Notably, in in silico gene expression analysis of human T-ALL samples we observed a significant correlation between Pin1 and Notch3 expression levels, which may further suggest a key role of the newly identified Notch3-Pin1 axis in T-ALL aggressiveness and progression. Thus, combined suppression of Pin1 and Notch3 proteins may be exploited as an additional target therapy for T-ALL.
Notch信号失调与T细胞急性淋巴细胞白血病(T-ALL)的发生和发展相关。越来越多的证据表明,Notch通路在包括白血病在内的肿瘤细胞侵袭能力中起重要作用,尽管其潜在分子机制大多仍不清楚。在此,我们表明Notch3是脯氨酰异构酶Pin1的一种新型靶蛋白,Pin1能够调节Notch3蛋白加工并稳定裂解产物,导致细胞内结构域(N3IC)表达增加,最终增强Notch3依赖性侵袭特性。我们证明,在过表达Notch3的人白血病TALL-1细胞中联合抑制Notch3和Pin1,可通过降低基质金属蛋白酶MMP9的表达来降低其高侵袭潜力。同样,在Notch3诱导的T-ALL小鼠模型中,Pin1缺失通过降低N3IC表达和信号传导,损害外周淋巴和非淋巴器官中CD4(+)CD8(+)双阳性(DP)细胞的扩增/侵袭能力。值得注意的是,在对人T-ALL样本的计算机基因表达分析中,我们观察到Pin1和Notch3表达水平之间存在显著相关性,这可能进一步表明新确定的Notch3-Pin1轴在T-ALL侵袭性和进展中起关键作用。因此,联合抑制Pin1和Notch3蛋白可作为T-ALL的一种额外靶向治疗方法。