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A rare DNA contact mutation in cancer confers p53 gain‐of‐function and tumor cell survival via TNFAIP8 induction

机译:癌症中罕见的DNA接触突变可通过TNFAIP8诱导赋予p53功能获得和肿瘤细胞存活

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摘要

The p53 tumor suppressor gene encodes a sequence‐specific transcription factor. Mutations in the coding sequence of p53 occur frequently in human cancer and often result in single amino acid substitutions (missense mutations) in the DNA binding domain (DBD), blocking normal tumor suppressive functions. In addition to the loss of canonical functions, some missense mutations in p53 confer gain‐of‐function (GOF) activities to tumor cells. While many missense mutations in p53 cluster at six “hotspot” amino acids, the majority of mutations in human cancer occur elsewhere in the DBD and at a much lower frequency. We report here that mutations at K120, a non‐hotspot DNA contact residue, confer p53 with the previously unrecognized ability to bind and activate the transcription of the pro‐survival TNFAIP8 gene. Mutant K120 p53 binds the TNFAIP8 locus at a cryptic p53 response element that is not occupied by wild‐type p53. Furthermore, induction of TNFAIP8 is critical for the evasion of apoptosis by tumor cells expressing the K120R variant of p53. These findings identify induction of pro‐survival targets as a mechanism of gain‐of‐function activity for mutant p53 and will likely broaden our understanding of this phenomenon beyond the limited number of GOF activities currently reported for hotspot mutants.
机译:p53抑癌基因编码序列特异性转录因子。 p53编码序列的突变在人类癌症中经常发生,并经常导致DNA结合域(DBD)中的单个氨基酸取代(缺失突变),从而阻断正常的肿瘤抑制功能。除了经典功能的丧失之外,p53中的一些错义突变还赋予了肿瘤细胞功能获得(GOF)的活性。尽管p53中的许多错义突变都聚集在六个“热点”氨基酸上,但人类癌症中的大多数突变发生在DBD的其他位置,且发生频率要低得多。我们在此报告,K120(非热点DNA接触残基)处的突变赋予p53具有以前无法识别的结合并激活生存前TNFAIP8基因转录的能力。突变体K120 p53在一个未被野生型p53占据的隐性p53反应元件上结合TNFAIP8基因座。此外,TNFAIP8的诱导对于表达p53的K120R变体的肿瘤细胞逃避凋亡至关重要。这些发现将诱导生存前靶标作为突变体p53功能获得活性的一种机制,并且可能会扩大我们对这一现象的理解,超出目前报道的热点突变体有限的GOF活性。

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