Human EWS-FLI protein levels and neomorphic functions show a complex, function-specific dose-response relationship in Drosophila.

IF 4.5 3区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Open Biology Pub Date : 2024-07-01 Epub Date: 2024-07-17 DOI:10.1098/rsob.240043
Serena Mahnoor, Cristina Molnar, Diego Velázquez, Jose Reina, Salud Llamazares, Jan Peter Heinen, Jaume Mora, Cayetano Gonzalez
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Abstract

Ewing sarcoma (EwS) is a cancer that arises in the bones and soft tissues, typically driven by the Ewing's sarcoma breakpoint region 1-Friend leukemia virus integration 1 (EWS-FLI) oncogene. Implementation of genetically modified animal models of EwS has proved difficult largely owing to EWS-FLI's high toxicity. The EWS-FLI1FS frameshift variant that circumvents toxicity but is still able to perform key oncogenic functions provided the first study model in Drosophila. However, the quest for Drosophila lines expressing full-length, unmodified EWS-FLI remained open. Here, we show that EWS-FLI1FS's lower toxicity is owed to reduced protein levels caused by its frameshifted C-terminal peptide, and report new strategies through which we have generated Drosophila lines that express full-length, unmodified EWS-FLI. Using these lines, we have found that the upregulation of transcription from GGAA-microsatellites (GGAAμSats) presents a positive linear correlation within a wide range of EWS-FLI protein concentrations. In contrast, rather counterintuitively, GGAAμSats-independent transcriptomic dysregulation presents relatively minor differences across the same range, suggesting that GGAAμSat-dependent and -independent transcriptional upregulation present different kinetics of response with regards to changing EWS-FLI protein concentration. Our results underpin the functional relevance of varying EWS-FLI expression levels and provide experimental tools to investigate, in Drosophila, the effect of the EWS-FLI 'high' and 'low' states that have been reported and are suspected to be important for EwS in humans.

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果蝇体内人类 EWS-FLI 蛋白水平和新形态功能显示出复杂的、功能特异性剂量反应关系。
尤文肉瘤(EwS)是一种发生在骨骼和软组织的癌症,通常由尤文肉瘤断点区 1-朋友白血病病毒整合 1(EWS-FLI)癌基因驱动。主要由于 EWS-FLI 的高毒性,转基因 EwS 动物模型很难实现。EWS-FLI1FS框架移位变体可以规避毒性,但仍能发挥关键的致癌功能,这为果蝇提供了第一个研究模型。然而,对表达全长、未修改的 EWS-FLI 的果蝇品系的探索仍然没有结果。在这里,我们证明了 EWS-FLI1FS 的低毒性是由于其 C 端肽的帧移位导致蛋白质水平降低,并报告了我们通过新策略产生表达全长、未修饰 EWS-FLI 的果蝇品系。利用这些品系,我们发现在很宽的 EWS-FLI 蛋白浓度范围内,GGAA-微卫星(GGAAμSats)的转录上调呈正线性相关。相反,与之相反的是,独立于 GGAAμSats 的转录组失调在相同范围内的差异相对较小,这表明独立于 GGAAμSat 和独立于 GGAAμSat 的转录上调对 EWS-FLI 蛋白浓度的变化呈现出不同的反应动力学。我们的研究结果证明了不同 EWS-FLI 表达水平的功能相关性,并为在果蝇中研究 EWS-FLI 的 "高 "和 "低 "状态的影响提供了实验工具。
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来源期刊
Open Biology
Open Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
10.00
自引率
1.70%
发文量
136
审稿时长
6-12 weeks
期刊介绍: Open Biology is an online journal that welcomes original, high impact research in cell and developmental biology, molecular and structural biology, biochemistry, neuroscience, immunology, microbiology and genetics.
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