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首页> 外文期刊>Cell death & disease. >Transcriptome profiling of caspase-2 deficient EμMyc and Th-MYCN mouse tumors identifies distinct putative roles for caspase-2 in neuronal differentiation and immune signaling
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Transcriptome profiling of caspase-2 deficient EμMyc and Th-MYCN mouse tumors identifies distinct putative roles for caspase-2 in neuronal differentiation and immune signaling

机译:缺乏caspase-2的EμMyc和Th-MYCN小鼠肿瘤的转录组谱分析确定了caspase-2在神经元分化和免疫信号传导中的独特推定作用

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摘要

Caspase-2 is a highly conserved cysteine protease with roles in apoptosis and tumor suppression. Our recent findings have also demonstrated that the tumor suppression function of caspase-2 is context specific. In particular, while caspase-2 deficiency augments lymphoma development in the EμMyc mouse model, it leads to delayed neuroblastoma development in Th-MYCN mice. However, it is unclear how caspase-2 mediates these differential outcomes. Here we utilized RNA sequencing to define the transcriptomic changes caused by caspase-2 (Casp2?/?) deficiency in tumors from EμMyc and Th-MYCN mice. We describe key changes in both lymphoma and neuroblastoma-associated genes and identified differential expression of the EGF-like domain-containing gene, Megf6, in the two tumor types that may contribute to tumor outcome following loss of Casp2. We identified a panel of genes with altered expression in Th-MYCN/Casp2?/? tumors that are strongly associated with neuroblastoma outcome, with roles in melanogenesis, Wnt and Hippo pathway signaling, that also contribute to neuronal differentiation. In contrast, we found that key changes in gene expression in the EμMyc/Casp2?/? tumors, are associated with increased immune signaling and T-cell infiltration previously associated with more aggressive lymphoma progression. In addition, Rap1 signaling pathway was uniquely enriched in Casp2 deficient EμMyc tumors. Our findings suggest that Casp2 deficiency augments immune signaling pathways that may be in turn, enhance lymphomagenesis. Overall, our study has identified new genes and pathways that contribute to the caspase-2 tumor suppressor function and highlight distinct roles for caspase-2 in different tissues.
机译:Caspase-2是高度保守的半胱氨酸蛋白酶,在细胞凋亡和肿瘤抑制中起作用。我们最近的发现还证明了caspase-2的肿瘤抑制功能是上下文相关的。特别是,虽然caspase-2缺乏症会增加EμMyc小鼠模型中的淋巴瘤发展,但会导致Th-MYCN小鼠中的神经母细胞瘤发展延迟。但是,尚不清楚caspase-2如何介导这些不同的结果。在这里,我们利用RNA测序来确定EμMyc和Th-MYCN小鼠的肿瘤中caspase-2(Casp2α/β)缺乏引起的转录组变化。我们描述了淋巴瘤和神经母细胞瘤相关基因中的关键变化,并鉴定了两种可能导致Casp2缺失的肿瘤预后的肿瘤类型中,含有EGF样域的基因Megf6的差异表达。我们鉴定了一组在Th-MYCN /Casp2α/β中表达改变的基因。与神经母细胞瘤预后密切相关的肿瘤,在黑色素生成,Wnt和Hippo信号通路中起作用,也有助于神经元分化。相反,我们发现EμMyc/Casp2α/β基因表达的关键变化。肿瘤与免疫信号增强和T细胞浸润有关,而T细胞浸润先前与更具攻击性的淋巴瘤进展有关。此外,Rap1信号通路在Casp2缺陷型EμMyc肿瘤中独特地富集。我们的发现表明,Casp2缺乏症会增强免疫信号通路,进而可能增强淋巴瘤的发生。总体而言,我们的研究已经确定了有助于caspase-2肿瘤抑制功能的新基因和途径,并突出了caspase-2在不同组织中的独特作用。

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