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ΔNp63β的差异转录活性由一种异构体特异性C末端编码。

Differential Transcriptional Activity of ΔNp63β Is Encoded by an Isoform-Specific C-Terminus.

作者信息

McCann Abby A, Sammons Morgan A

机构信息

Department of Biological Sciences, The RNA Institute University at Albany, State University of New York, Albany, New York, USA.

出版信息

Mol Cell Biol. 2025 Jun 23:1-17. doi: 10.1080/10985549.2025.2514529.

Abstract

p63 is a clinically relevant transcription factor heavily involved in development and disease. Mutations in the p63 DNA-binding domain cause severe developmental defects and overexpression of p63 plays a role in the progression of epithelial-associated cancers. Unraveling the specific biochemical mechanisms underlying these phenotypes is made challenging by the presence of multiple p63 isoforms and their shared and unique contributions to development and disease. Here, we explore the function of the p63 isoforms ΔNp63ɑ and ΔNp63β to determine the contribution of C-terminal splice variants on known and unique molecular and biochemical activities. Using RNA-seq and ChIP-seq on isoform-specific cell lines, we show that ΔNp63β regulates both canonical ΔNp63ɑ targets and a unique set of genes with varying biological functions. We demonstrate that most genomic binding sites are shared, however the enhancer-associated histone modification H3K27ac is highly enriched at ΔNp63β binding sites relative to ΔNp63ɑ. An array of ΔNp63β C-terminal mutants demonstrates the importance of isoform-specific C-terminal domains in regulating these unique activities. Our results provide novel insight into differential activities of p63 C-terminal isoforms and suggest future directions for dissecting the functional relevance of these and other transcription factor isoforms in development and disease.

摘要

p63是一种与临床相关的转录因子,在发育和疾病中发挥着重要作用。p63 DNA结合结构域的突变会导致严重的发育缺陷,而p63的过表达在上皮相关癌症的进展中起作用。由于存在多种p63异构体及其对发育和疾病的共同和独特贡献,揭示这些表型背后的具体生化机制具有挑战性。在这里,我们探索p63异构体ΔNp63ɑ和ΔNp63β的功能,以确定C末端剪接变体对已知和独特分子及生化活性的贡献。通过对异构体特异性细胞系进行RNA测序和染色质免疫沉淀测序,我们发现ΔNp63β既能调节典型的ΔNp63ɑ靶标,也能调节一组具有不同生物学功能的独特基因。我们证明,大多数基因组结合位点是共享的,然而,相对于ΔNp63ɑ,增强子相关的组蛋白修饰H3K27ac在ΔNp63β结合位点高度富集。一系列ΔNp63β C末端突变体证明了异构体特异性C末端结构域在调节这些独特活性中的重要性。我们的结果为p63 C末端异构体的差异活性提供了新的见解,并为剖析这些及其他转录因子异构体在发育和疾病中的功能相关性指明了未来的方向。

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