Dominant-Negative Effects of p53 R337 Variants in Li-Fraumeni Syndrome: Impact on Tetramer Formation and Transcriptional Activity.

IF 2.8 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
ChemBioChem Pub Date : 2025-07-24 DOI:10.1002/cbic.202500330
Rui Kamada, Shuya Sakaguchi, Madoka Kanno, Takaaki Ozawa, Natsumi Nakagawa, James G Omichinski, Kazuyasu Sakaguchi
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Abstract

Li-Fraumeni syndrome (LFS) is an inherited cancer predisposition disorder caused by heterozygous TP53 mutations. Among these, missense mutations at Arg337-such as R337C and R337H-are common in LFS patients. Although many studies have characterized individual p53 variants in LFS, the impact of tetramerization domain (TD) mutations on wild-type (WT) p53 function remains unclear. Herein, a novel FRET-based assay system that enables the simultaneous detection of heterotetramer formation and p53-dependent transcriptional activity in live cells is developed. These results show that the heteromultimerization of the R337C variant with WT p53 is only slightly reduced compared to WT homotetramers, yet its transcriptional activity is diminished by over 50%. In contrast, the R337H variant forms heterotetramers at near-normal levels but exhibits markedly compromised transcriptional activity. These findings reveal a previously unrecognized dominant-negative-like effect, suggesting reduced p53 function is due not only to decreased tetramer formation but also to diminished heterotetramer stability. Moreover, the LFS-associated p53TD variants show a greater loss of activity against the low-affinity, apoptosis-inducing bax response element than against the high-affinity, cell cycle arrest-related CDKN1A response element. Collectively, this study demonstrates that p53TD mutations can exert dominant-negative effects, advancing the understanding of p53 heteromultimer function in LFS pathogenesis. These mechanistic insights into p53 heterotetramer stability may not only inform genetic screening strategies for LFS but also support future therapeutic approaches aimed at restoring p53 function by stabilizing mutant tetramers.

Li-Fraumeni综合征中p53 R337变异的显性负作用:对四聚体形成和转录活性的影响
Li-Fraumeni综合征(LFS)是一种由TP53杂合突变引起的遗传性癌症易感性疾病。其中,arg337错义突变(如R337C和r337h)在LFS患者中很常见。尽管许多研究已经描述了LFS中单个p53变异的特征,但四聚域(TD)突变对野生型(WT) p53功能的影响尚不清楚。本文开发了一种新的基于fret的检测系统,可以同时检测活细胞中异源四聚体的形成和p53依赖的转录活性。这些结果表明,与WT四聚体相比,R337C变体与WT p53的异多聚性仅略有降低,但其转录活性却降低了50%以上。相比之下,R337H变体在接近正常水平形成异源四聚体,但表现出明显受损的转录活性。这些发现揭示了一种以前未被认识到的显性负性效应,表明p53功能的降低不仅是由于四聚体形成减少,而且还由于异源四聚体稳定性降低。此外,lfs相关的p53TD变异对低亲和力、诱导凋亡的bax反应元件的活性损失比对高亲和力、细胞周期阻滞相关的CDKN1A反应元件的活性损失更大。总之,本研究表明p53TD突变可以发挥显性负作用,促进了对p53异多聚体在LFS发病机制中的作用的理解。这些关于p53异四聚体稳定性的机制见解不仅可以为LFS的遗传筛查策略提供信息,还可以支持未来通过稳定突变四聚体来恢复p53功能的治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ChemBioChem
ChemBioChem 生物-生化与分子生物学
CiteScore
6.10
自引率
3.10%
发文量
407
审稿时长
1 months
期刊介绍: ChemBioChem (Impact Factor 2018: 2.641) publishes important breakthroughs across all areas at the interface of chemistry and biology, including the fields of chemical biology, bioorganic chemistry, bioinorganic chemistry, synthetic biology, biocatalysis, bionanotechnology, and biomaterials. It is published on behalf of Chemistry Europe, an association of 16 European chemical societies, and supported by the Asian Chemical Editorial Society (ACES).
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