小鼠模型和人类患者数据揭示了Pten和p53在抑制POLE突变体肿瘤发展中的关键作用

IF 3.4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY NAR cancer Pub Date : 2022-01-13 DOI:10.1093/narcan/zcac004
Vivian S. Park, Meijuan J S Sun, Wesley D. Frey, Leonard G. Williams, K. Hodel, Juliet D. Strauss, Sydney J. Wellens, J. Jackson, Z. Pursell
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引用次数: 3

摘要

极点外切酶结构域的突变与肿瘤携带非常高的突变负荷有关。这种显著的突变积累和肿瘤发展之间的联系机制仍然知之甚少。与Pole+/P286R;Trp53+/+小鼠相比,Pole+/P286R;Trp53+/+小鼠的癌症死亡率加快。来自Pole+/P286R小鼠的细胞显示p53激活增加,随后p53的缺失允许快速生长,暗示在Pole突变肿瘤生长中典型的p53杂合性缺失。然而,p53状态对小鼠或人的POLE突变肿瘤的肿瘤突变负荷或单碱基取代特征没有影响。Pten在维持基因组稳定性方面起着重要作用。我们发现PTEN突变在人类极点突变肿瘤中高度富集,包括许多极点特征环境。一种这样的特征突变,Pten - f341v,先前在小鼠模型中被证明可以特异性地减少核Pten并导致DNA损伤增加。我们发现Pole+/P286R小鼠的肿瘤自发获得PtenF341V突变,并与核Pten显著减少和DNA损伤升高相关。重新分析人类TCGA(癌症基因组图谱)数据显示,所有PTEN-F341V突变都发生在POLE突变的肿瘤中。结合最近发表的研究成果,我们的研究结果支持这样一种观点,即除了极点介导的高突变外,极点突变肿瘤的发展可能还涉及对核DNA损伤的失能监测。
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Mouse model and human patient data reveal critical roles for Pten and p53 in suppressing POLE mutant tumor development
Abstract Mutations in the exonuclease domain of POLE are associated with tumors harboring very high mutation burdens. The mechanisms linking this significant mutation accumulation and tumor development remain poorly understood. Pole+/P286R;Trp53+/– mice showed accelerated cancer mortality compared to Pole+/P286R;Trp53+/+ mice. Cells from Pole+/P286R mice showed increased p53 activation, and subsequent loss of p53 permitted rapid growth, implicating canonical p53 loss of heterozygosity in POLE mutant tumor growth. However, p53 status had no effect on tumor mutation burden or single base substitution signatures in POLE mutant tumors from mice or humans. Pten has important roles in maintaining genome stability. We find that PTEN mutations are highly enriched in human POLE mutant tumors, including many in POLE signature contexts. One such signature mutation, PTEN-F341V, was previously shown in a mouse model to specifically decrease nuclear Pten and lead to increased DNA damage. We found tumors in Pole+/P286R mice that spontaneously acquired PtenF341V mutations and were associated with significantly reduced nuclear Pten and elevated DNA damage. Re-analysis of human TCGA (The Cancer Genome Atlas) data showed that all PTEN-F341V mutations occurred in tumors with mutations in POLE. Taken together with recent published work, our results support the idea that development of POLE mutant tumors may involve disabling surveillance of nuclear DNA damage in addition to POLE-mediated hypermutagenesis.
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CiteScore
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