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DBD-α4 helix of EWSR1::FLI1 is required for GGAA microsatellite binding that underlies genome regulation in Ewing sarcoma.EWSR1::FLI1的DBD-α4螺旋对于GGAA微卫星结合是必需的,而GGAA微卫星结合是尤文肉瘤基因组调控的基础。
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EWSR1::FLI1的DBD-α4螺旋对于GGAA微卫星结合是必需的,而GGAA微卫星结合是尤文肉瘤基因组调控的基础。

DBD-α4 helix of EWSR1::FLI1 is required for GGAA microsatellite binding that underlies genome regulation in Ewing sarcoma.

作者信息

Bayanjargal Ariunaa, Taslim Cenny, Showpnil Iftekhar A, Selich-Anderson Julia, Crow Jesse C, Lessnick Stephen L, Theisen Emily Rose

出版信息

bioRxiv. 2024 Jun 7:2024.01.31.578127. doi: 10.1101/2024.01.31.578127.

DOI:10.1101/2024.01.31.578127
PMID:38352344
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10862889/
Abstract

Ewing sarcoma is the second most common bone cancer in children and young adults. In 85% of patients, a translocation between chromosomes 11 and 22 results in a potent fusion oncoprotein, EWSR1::FLI1. EWSR1::FLI1 is the only genetic alteration in an otherwise unaltered genome of Ewing sarcoma tumors. The EWSR1 portion of the protein is an intrinsically disordered domain involved in transcriptional regulation by EWSR1::FLI1. The FLI portion of the fusion contains a DNA binding domain shown to bind core GGAA motifs and GGAA repeats. A small alpha-helix in the DNA binding domain of FLI1, DBD-𝛼4 helix, is critical for the transcription function of EWSR1::FLI1. In this study, we aimed to understand the mechanism by which the DBD-𝛼4 helix promotes transcription, and therefore oncogenic transformation. We utilized a multi-omics approach to assess chromatin organization, active chromatinmarks, genome binding, and gene expression in cells expressing EWSR1::FLI1 constructs with and without the DBD-𝛼4 helix. Our studies revealed DBD-𝛼4 helix is crucial for cooperative binding of EWSR1::FLI1 at GGAA microsatellites. This binding underlies many aspects of genome regulation by EWSR1::FLI1 such as formation of TADs, chromatin loops, enhancers and productive transcription hubs.

摘要

尤因肉瘤是儿童和青年中第二常见的骨癌。在85%的患者中,11号和22号染色体之间的易位会产生一种强大的融合致癌蛋白EWSR1::FLI1。EWSR1::FLI1是尤因肉瘤肿瘤原本未改变的基因组中唯一的基因改变。该蛋白的EWSR1部分是一个内在无序结构域,参与EWSR1::FLI1的转录调控。融合蛋白的FLI部分包含一个DNA结合结构域,已证明该结构域可结合核心GGAA基序和GGAA重复序列。FLI1的DNA结合结构域中的一个小α螺旋,即DBD-α4螺旋,对EWSR1::FLI1的转录功能至关重要。在本研究中,我们旨在了解DBD-α4螺旋促进转录从而导致致癌转化的机制。我们采用多组学方法评估表达有或没有DBD-α4螺旋的EWSR1::FLI1构建体的细胞中的染色质组织、活性染色质标记、基因组结合和基因表达。我们的研究表明,DBD-α4螺旋对于EWSR1::FLI1在GGAA微卫星处的协同结合至关重要。这种结合是EWSR1::FLI1对基因组调控的许多方面的基础,如拓扑相关结构域(TADs)、染色质环、增强子和高效转录中心的形成。