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Genetic deletion of caspase-2 accelerates MMTV/c-neu-driven mammary carcinogenesis in mice

机译:caspase-2的基因删除可加速MMTV / c-neu驱动的小鼠乳癌的发生

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Despite being the most evolutionarily conserved of the mammalian caspases, little is understood about the cellular function of caspase-2 in normal tissues or what role caspase-2 may have in the progression of human disease. It has been reported that deletion of the caspase-2 gene (Casp2), accelerates Eμ-myc lymphomagenesis in mice, and thus caspase-2 may act as a tumor suppressor in hematological malignancies. Here, we sought to extend these findings to epithelial cancers by examining the potential role of caspase-2 as a tumor suppressor in the mouse mammary carcinogenesis model; MMTV/c-neu. The rate of tumor acquisition was significantly higher in multiparous Casp2-/-/MMTV mice compared with Casp2 +/+/MMTV and Casp2 +/-/MMTV mice. Cells from Casp2-/-/MMTV tumors were often multinucleated and displayed bizarre mitoses and karyomegaly, while cells from Casp2 +/+/MMTV and Casp2 +/-/MMTV tumors never displayed this phenotype. Tumors from Casp2-/-/MMTV animals had a significantly higher mitotic index than tumors from Casp2 +/+/MMTV and Casp2 +/-/MMTV animals. Cell cycle analysis of Casp2-/-E1A/Ras-transformed mouse embryonic fibroblasts (MEF) also indicated a higher proliferative rate in the absence of caspase-2. In vitro assays further illustrated that MEF had increased genomic instability in the absence of caspase-2. This appears to be due to disruption of the p53 pathway because we observed a concomitant decrease in the induction of the p53 target genes, Pidd, p21 and Mdm2. Thus caspase-2 may function as a tumor suppressor, in part, through regulation of cell division and genomic stability.
机译:尽管是哺乳动物半胱天冬酶中进化最保守的,但对胱天蛋白酶-2在正常组织中的细胞功能或胱天蛋白酶-2在人类疾病进展中可能起什么作用的了解很少。据报道,caspase-2基因(Casp2)的缺失,加速了小鼠Eμ-myc淋巴瘤的发生,因此caspase-2可能在血液系统恶性肿瘤中起着抑癌作用。在这里,我们试图通过检查caspase-2作为小鼠乳癌形成模型中的抑癌剂的潜在作用,将这些发现扩展到上皮癌。 MMTV / c-neu。与Casp2 + / + / MMTV和Casp2 + /-/ MMTV小鼠相比,多胎Casp2-/-/ MMTV小鼠的肿瘤获得率显着更高。来自Casp2-/-/ MMTV肿瘤的细胞通常是多核的,并表现出奇异的有丝分裂和核肿大,而来自Casp2 + / + / MMTV和Casp2 + /-/ MMTV肿瘤的细胞从未表现出这种表型。来自Casp2-/-/ MMTV动物的肿瘤的有丝分裂指数明显高于来自Casp2 + / + / MMTV和Casp2 + /-/ MMTV动物的肿瘤。 Casp2-/-E1A / Ras转化的小鼠胚胎成纤维细胞(MEF)的细胞周期分析也表明,在不存在caspase-2的情况下,其增殖速率更高。体外测定进一步表明,在不存在caspase-2的情况下,MEF具有增加的基因组不稳定性。这似乎是由于p53途径的破坏所致,因为我们观察到p53靶基因Pidd,p21和Mdm2的诱导伴随减少。因此,caspase-2可以部分通过调节细胞分裂和基因组稳定性来充当肿瘤抑制因子。

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