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Matrix Metalloproteinase-9 gene induction by a truncated oncogenic NF-κB2 protein involves the recruitment of MLL1 and MLL2 H3K4 histone methyltransferase complexes.

机译:截短的致癌性NF-κB2蛋白诱导基质金属蛋白酶9基因涉及募集MLL1和MLL2 H3K4组蛋白甲基转移酶复合物。

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摘要

Constitutive nuclear factor (NF)-kappaB activation in haematological malignancies is caused in several cases by loss of function mutations within the coding sequence of NF-kappaB inhibitory molecules such as IkappaBalpha or p100. Hut-78, a truncated form of p100, constitutively generates p52 and contributes to the development of T-cell lymphomas but the molecular mechanism underlying this oncogenic potential remains unclear. We show here that MMP9 gene expression is induced through the alternative NF-kappaB-activating pathway in fibroblasts and also on Hut-78 or p52 overexpression in fibroblasts as well as in lymphoma cells. p52 is critical for Hut-78-mediated MMP9 gene induction as a Hut-78 mutant as well as other truncated NF-kappaB2 proteins that are not processed into p52 failed to induce the expression of this metalloproteinase. Conversely, MMP9 gene expression is impaired in p52-depleted HUT-78 cells. Interestingly, MLL1 and MLL2 H3K4 methyltransferase complexes are tethered by p52 on the MMP9 but not on the IkappaBalpha promoter, and the H3K4 trimethyltransferase activity recruited on the MMP9 promoter is impaired in p52-depleted HUT-78 cells. Moreover, MLL1 and MLL2 are associated with Hut-78 in a native chromatin-enriched extract. Thus, we identified a molecular mechanism by which the recruitment of a H3K4 histone methyltransferase complex on the promoter of a NF-kappaB-dependent gene induces its expression and potentially the invasive potential of lymphoma cells harbouring constitutive activity of the alternative NF-kappaB-activating pathway.
机译:在某些情况下,血液恶性肿瘤中的组成性核因子(NF)-kappaB激活是由NF-kappaB抑制性分子(例如IkappaBalpha或p100)的编码序列内功能突变的丧失引起的。 Hut-78是p100的截短形式,可组成性地生成p52,并有助于T细胞淋巴瘤的发生,但尚不清楚这种致癌潜能的分子机制。我们在这里显示,MMP9基因表达是通过成纤维细胞中的替代性NF-κB活化途径诱导的,而且还存在于成纤维细胞以及淋巴瘤细胞中的Hut-78或p52过表达。 p52对于Hut-78介导的MMP9基因诱导至关重要,因为Hut-78突变体以及其他未加工成p52的截短的NF-kappaB2蛋白无法诱导这种金属蛋白酶的表达。相反,在耗尽p52的HUT-78细胞中MMP9基因表达受损。有趣的是,MLL1和MLL2 H3K4甲基转移酶复合物在MMP9上受p52束缚,但在IkappaBalpha启动子上不受p52束缚,而在MMP9启动子上募集的H3K4三甲基转移酶活性在p52缺失的HUT-78细胞中受损。此外,MLL1和MLL2与富含染色质的天然提取物中的Hut-78有关。因此,我们确定了一种分子机制,通过该分子机制,H3K4组蛋白甲基转移酶复合物在NF-kappaB依赖基因的启动子上的募集诱导了其表达,并潜在地发挥了具有替代性NF-kappaB激活作用的本构活性的淋巴瘤细胞的侵袭潜力。途径。

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