Nucleosome-binding by TP53, TP63, and TP73 is determined by the composition, accessibility, and helical orientation of their binding sites

IF 5.5 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Genome research Pub Date : 2025-02-10 DOI:10.1101/gr.279541.124
Patrick Wilson, Xinyang Yu, Christopher R Handelmann, Michael J Buck
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Abstract

The TP53 family of transcription factors plays key roles in driving development and combating cancer by regulating gene expression. TP53, TP63, and TP73 - the three members of the TP53 family - regulate gene expression by binding to their DNA binding sites, many of which are situated within nucleosomes. To thoroughly examine the nucleosome-binding abilities of the TP53 family, we used Pioneer-seq, a technique that assesses a transcription factor's binding affinity to its DNA binding sites at all possible positions within the nucleosome core particle. Using Pioneer-seq, we analyzed the binding affinity of TP53, TP63, and TP73 to 10 TP53-family binding sites across the nucleosome core particle. We found that the affinity of TP53, TP63, and TP73 for nucleosomes was primarily determined by the positioning of TP53-family binding sites within nucleosomes; TP53-family members bind strongly to the more accessible edges of nucleosomes but weakly to the less accessible centers of nucleosomes. Our results further show that the DNA-helical orientation of TP53-family binding sites within nucleosomal DNA impacts the nucleosome-binding affinity of TP53-family members, with binding site composition impacting each TP53-family member's affinity only when the binding site location was accessible. Taken together, our results show that the accessibility, composition, and helical orientation of TP53-family binding sites collectively determine the nucleosome-binding affinities of TP53, TP63, and TP73. These findings help explain the rules underlying TP53-family-nucleosome binding and thus provide requisite insight into how we may better control gene-expression changes involved in development and tumor suppression.
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核小体与TP53、TP63和TP73的结合是由它们结合位点的组成、可及性和螺旋取向决定的
TP53家族转录因子通过调控基因表达在促进肿瘤发展和对抗癌症中发挥着关键作用。TP53、TP63和TP73是TP53家族的三个成员,它们通过结合DNA结合位点来调节基因表达,其中许多位点位于核小体内。为了彻底检查TP53家族的核小体结合能力,我们使用了Pioneer-seq,这是一种评估转录因子与核小体核心颗粒内所有可能位置的DNA结合位点的结合亲和力的技术。利用Pioneer-seq,我们分析了TP53、TP63和TP73与核小体核心颗粒中10个TP53家族结合位点的结合亲和力。我们发现,TP53、TP63和TP73对核小体的亲和力主要取决于核小体内TP53家族结合位点的定位;tp53家族成员与核小体更易接近的边缘结合较强,但与核小体不易接近的中心结合较弱。我们的研究结果进一步表明,核小体DNA内tp53家族结合位点的DNA螺旋取向会影响tp53家族成员的核小体结合亲和力,只有当结合位点位置可及时,结合位点的组成才会影响每个tp53家族成员的亲和力。综上所述,我们的研究结果表明,TP53家族结合位点的可及性、组成和螺旋取向共同决定了TP53、TP63和TP73的核小体结合亲和力。这些发现有助于解释tp53家族核小体结合的规则,从而为我们如何更好地控制参与发育和肿瘤抑制的基因表达变化提供必要的见解。
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来源期刊
Genome research
Genome research 生物-生化与分子生物学
CiteScore
12.40
自引率
1.40%
发文量
140
审稿时长
6 months
期刊介绍: Launched in 1995, Genome Research is an international, continuously published, peer-reviewed journal that focuses on research that provides novel insights into the genome biology of all organisms, including advances in genomic medicine. Among the topics considered by the journal are genome structure and function, comparative genomics, molecular evolution, genome-scale quantitative and population genetics, proteomics, epigenomics, and systems biology. The journal also features exciting gene discoveries and reports of cutting-edge computational biology and high-throughput methodologies. New data in these areas are published as research papers, or methods and resource reports that provide novel information on technologies or tools that will be of interest to a broad readership. Complete data sets are presented electronically on the journal''s web site where appropriate. The journal also provides Reviews, Perspectives, and Insight/Outlook articles, which present commentary on the latest advances published both here and elsewhere, placing such progress in its broader biological context.
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