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整合多组学分析发现 PBX1 在成年小鼠神经干细胞和祖细胞中的作用,鉴定出一个转录模块,将 PBX1 与 TCF3/4 功能联系起来。

Integrated multi-omics analysis of PBX1 in mouse adult neural stem- and progenitor cells identifies a transcriptional module that functionally links PBX1 to TCF3/4.

机构信息

Goethe University, University Hospital Frankfurt, Neurological Institute (Edinger Institute), 60528 Frankfurt am Main, Germany.

University of Manchester, Faculty of Biology, Medicine and Health, Bioinformatics Core Facility, Manchester, M13 9PT, UK.

出版信息

Nucleic Acids Res. 2024 Nov 11;52(20):12262-12280. doi: 10.1093/nar/gkae864.

Abstract

Developmental transcription factors act in networks, but how these networks achieve cell- and tissue specificity is still poorly understood. Here, we explored pre-B cell leukemia homeobox 1 (PBX1) in adult neurogenesis combining genomic, transcriptomic, and proteomic approaches. ChIP-seq analysis uncovered PBX1 binding to numerous genomic sites. Integration of PBX1 ChIP-seq with ATAC-seq data predicted interaction partners, which were subsequently validated by mass spectrometry. Whole transcriptome spatial RNA analysis revealed shared expression dynamics of Pbx1 and interacting factors. Among these were class I bHLH proteins TCF3 and TCF4. RNA-seq following Pbx1, Tcf3 or Tcf4 knockdown identified proliferation- and differentiation associated genes as shared targets, while sphere formation assays following knockdown argued for functional cooperativity of PBX1 and TCF3 in progenitor cell proliferation. Notably, while physiological PBX1-TCF interaction has not yet been described, chromosomal translocation resulting in genomic TCF3::PBX1 fusion characterizes a subtype of acute lymphoblastic leukemia. Introducing Pbx1 into Nalm6 cells, a pre-B cell line expressing TCF3 but lacking PBX1, upregulated the leukemogenic genes BLK and NOTCH3, arguing that functional PBX1-TCF cooperativity likely extends to hematopoiesis. Our study hence uncovers a transcriptional module orchestrating the balance between progenitor cell proliferation and differentiation in adult neurogenesis with potential implications for leukemia etiology.

摘要

发育转录因子在网络中发挥作用,但这些网络如何实现细胞和组织特异性仍知之甚少。在这里,我们结合基因组学、转录组学和蛋白质组学方法研究了成体神经发生中的前 B 细胞白血病同源盒 1(PBX1)。ChIP-seq 分析揭示了 PBX1 与许多基因组位点的结合。将 PBX1 ChIP-seq 与 ATAC-seq 数据整合预测了相互作用伙伴,随后通过质谱法进行了验证。全转录组空间 RNA 分析揭示了 Pbx1 和相互作用因子的共同表达动力学。其中包括 I 类 bHLH 蛋白 TCF3 和 TCF4。在敲低 Pbx1、Tcf3 或 Tcf4 后进行 RNA-seq 分析,确定了与增殖和分化相关的基因是共同的靶点,而在敲低后进行球体形成实验则表明 PBX1 和 TCF3 在祖细胞增殖中具有功能协同作用。值得注意的是,虽然尚未描述生理 PBX1-TCF 相互作用,但导致基因组 TCF3::PBX1 融合的染色体易位特征是急性淋巴细胞白血病的一种亚型。将 Pbx1 引入 Nalm6 细胞(一种表达 TCF3 但缺乏 PBX1 的前 B 细胞系)中,上调了白血病基因 BLK 和 NOTCH3,这表明功能性 PBX1-TCF 协同作用可能扩展到造血。因此,我们的研究揭示了一个转录模块,在成体神经发生中协调祖细胞增殖和分化之间的平衡,这可能对白血病的发病机制有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55b4/11551771/e420ea5a8d02/gkae864figgra1.jpg

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