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PML::RARA 和 GATA2 蛋白通过 DNA 模板相互作用,诱导小鼠和人类造血细胞中的异常自我更新。

PML::RARA and GATA2 proteins interact via DNA templates to induce aberrant self-renewal in mouse and human hematopoietic cells.

机构信息

Division of Oncology, Department of Internal Medicine, Section of Stem Cell Biology, Washington University School of Medicine, St. Louis, MO 63110.

出版信息

Proc Natl Acad Sci U S A. 2024 Apr 30;121(18):e2317690121. doi: 10.1073/pnas.2317690121. Epub 2024 Apr 22.

Abstract

The underlying mechanism(s) by which the PML::RARA fusion protein initiates acute promyelocytic leukemia is not yet clear. We defined the genomic binding sites of PML::RARA in primary mouse and human hematopoietic progenitor cells with V5-tagged PML::RARA, using anti-V5-PML::RARA chromatin immunoprecipitation sequencing and CUT&RUN approaches. Most genomic PML::RARA binding sites were found in regions that were already chromatin-accessible (defined by ATAC-seq) in unmanipulated, wild-type promyelocytes, suggesting that these regions are "open" prior to PML::RARA expression. We found that GATA binding motifs, and the direct binding of the chromatin "pioneering factor" GATA2, were significantly enriched near PML::RARA binding sites. Proximity labeling studies revealed that PML::RARA interacts with ~250 proteins in primary mouse hematopoietic cells; GATA2 and 33 others require PML::RARA binding to DNA for the interaction to occur, suggesting that binding to their cognate DNA target motifs may stabilize their interactions. In the absence of , overexpression induces many of the same epigenetic and transcriptional changes as . These findings suggested that may indirectly initiate its transcriptional program by activating expression: Indeed, we demonstrated that inactivation of prior to expression prevented its ability to induce self-renewal. These data suggested that GATA2 binding creates accessible chromatin regions enriched for both GATA and Retinoic Acid Receptor Element motifs, where GATA2 and PML::RARA can potentially bind and interact with each other. In turn, PML::RARA binding to DNA promotes a feed-forward transcriptional program by positively regulating expression. may therefore be required for to establish its transcriptional program.

摘要

PML

:RARA 融合蛋白引发急性早幼粒细胞白血病的潜在机制尚不清楚。我们使用 V5 标记的 PML::RARA,通过抗 V5-PML::RARA 染色质免疫沉淀测序和 CUT&RUN 方法,在原代小鼠和人造血祖细胞中定义了 PML::RARA 的基因组结合位点。大多数基因组 PML::RARA 结合位点位于未经过处理的野生型早幼粒细胞中已经可接近染色质(通过 ATAC-seq 定义)的区域,这表明这些区域在 PML::RARA 表达之前是“开放的”。我们发现 GATA 结合基序和染色质“先驱因子”GATA2 的直接结合在 PML::RARA 结合位点附近显著富集。接近标记研究表明,PML::RARA 在原代小鼠造血细胞中与~250 种蛋白质相互作用;GATA2 和其他 33 种蛋白质需要 PML::RARA 与 DNA 结合才能发生相互作用,这表明与它们的同源 DNA 靶标基序结合可能稳定它们的相互作用。在没有 的情况下,过表达会诱导与 相同的表观遗传和转录变化。这些发现表明, 可能通过激活 表达间接启动其转录程序:事实上,我们证明了在 表达之前失活 可防止其诱导自我更新的能力。这些数据表明,GATA2 结合创建了富含 GATA 和视黄酸受体元件基序的可及染色质区域,其中 GATA2 和 PML::RARA 可以潜在地相互结合和相互作用。反过来,PML::RARA 与 DNA 的结合通过正向调节 表达来促进正向转录程序。因此, 可能是 建立其转录程序所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f87e/11067031/773657f3440c/pnas.2317690121fig01.jpg

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