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Gene Expression Profiles Resulting from Stable Loss of p53 Mirrors Its Role in Tissue Differentiation

机译:p53稳定丢失导致的基因表达谱反映了其在组织分化中的作用

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摘要

The tumor suppressor gene p53 is involved in a variety of cellular activities such as cellular stress responses, cell cycle regulation and differentiation. In our previous studies we have shown p53’s transcription activating role to be important in osteoblast differentiation. There is still a debate in the literature as to whether p53 inhibits or promotes differentiation. We have found p53 heterozygous mice to show a p53 dependency on some bone marker gene expression that is absent in knockout mice. Mice heterozygous for p53 also show a higher incidence of osteosarcomas than p53 knockout mice. This suggests that p53 is able to modify the environment within osteoblasts. In this study we compare changes in gene expression resulting after either a transient or stable reduction in p53. Accordingly we reduced p53 levels transiently and stably in C2C12 cells, which are capable of both myoblast and osteoblast differentiation, and compared the changes in gene expression of candidate genes regulated by the p53 pathway. Using a PCR array to assay for p53 target genes, we have found different expression profiles when comparing stable versus transient knockdown of p53. As expected, several genes with profound changes after transient p53 loss were related to apoptosis and cell cycle regulation. In contrast, stable p53 loss produced a greater change in MyoD and other transcription factors with tissue specific roles, suggesting that long term loss of p53 affects tissue homeostasis to a greater degree than changes resulting from acute loss of p53. These differences in gene expression were validated by measuring promoter activity of different pathway specific genes involved in differentiation. These studies suggest that an important role for p53 is context dependent, with a stable reduction in p53 expression affecting normal tissue physiology more than acute loss of p53.
机译:肿瘤抑制基因p53参与多种细胞活动,例如细胞应激反应,细胞周期调控和分化。在我们以前的研究中,我们已经证明p53的转录激活作用在成骨细胞分化中很重要。关于p53是否抑制或促进分化,文献中仍有争议。我们发现p53杂合小鼠对某些基因标记基因表达具有p53依赖性,而基因标记基因的表达在基因敲除小鼠中不存在。与p53基因敲除小鼠相比,p53基因杂合性小鼠的骨肉瘤发病率也更高。这表明p53能够改变成骨细胞内的环境。在这项研究中,我们比较了p53瞬时或稳定降低后基因表达的变化。因此,我们在能够成肌细胞和成骨细胞分化的C2C12细胞中瞬时稳定地降低了p53水平,并比较了受p53途径调控的候选基因的基因表达变化。使用PCR阵列分析p53靶基因时,我们在比较p53的稳定敲除与瞬时敲除时发现了不同的表达谱。不出所料,短暂的p53缺失后几个具有深刻变化的基因与细胞凋亡和细胞周期调控有关。相比之下,稳定的p53丢失会在MyoD和其他具有组织特定作用的转录因子方面产生更大的变化,这表明与急性p53丢失引起的变化相比,p53的长期丢失对组织稳态的影响更大。通过测量参与分化的不同途径特异性基因的启动子活性来验证基因表达的这些差异。这些研究表明,p53的重要作用是上下文相关的,p53表达的稳定降低对正常组织生理的影响大于对p53的急性丧失。

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