RNA 螺旋酶 DDX19A/B 通过调节白血病细胞中 MCL1 mRNA 的核输出来调节西林索的敏感性。

IF 12.8 1区 医学 Q1 HEMATOLOGY Leukemia Pub Date : 2024-07-11 DOI:10.1038/s41375-024-02343-2
Tatsuya Terasaki, Yuichiro Semba, Kensuke Sasaki, Hiroshi Imanaga, Kiyoko Setoguchi, Takuji Yamauchi, Shigeki Hirabayashi, Fumihiko Nakao, Koshi Akahane, Takeshi Inukai, Takaomi Sanda, Koichi Akashi, Takahiro Maeda
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引用次数: 0

摘要

Selinexor 是第一类 exportin1 (XPO1) 抑制剂,因其独特的作用机制而成为一种极具吸引力的抗肿瘤药物;然而,其剂量依赖性毒性和生物标志物的缺乏使其无法广泛应用于临床。为了确定调控selinexor敏感性的关键分子/通路,我们利用两个B-ALL品系进行了全基因组CRISPR/Cas9剔除筛选。我们首次发现,同族的 DDX19A 和 DDX19B RNA 螺旋酶通过调节 MCL1 mRNA 的核输出来调节西利索的敏感性。虽然单个删除 DDX19A 或 DDX19B 几乎不会改变 MCL1 蛋白水平,但同时删除这两种酶会显著减少 MCL1 mRNA 的核输出,从而降低 MCL1 蛋白水平。重要的是,将西利奈柯治疗与 DDX19A 或 DDX19B 的缺失结合起来,能明显诱导白血病细胞的内在凋亡,而 MCL1 的过表达能挽救这种效应。对 Depmap 数据集的分析表明,一部分 T-ALL 株系表达的 DDX19B mRNA 水平极低。此外,我们还发现,西利奈克索治疗或 DDX19A 缺失都能有效诱导表达低水平 DDX19B 的 T-ALL 株系凋亡。我们的结论是,XPO1和DDX19A/B能协调调节细胞中MCL1的水平,并提出DDX19A/B可作为西利奈柯治疗的生物标志物。此外,以 DDX19 旁系亲属为药物靶标可能是诱导白血病细胞内在凋亡的一种潜在策略。
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The RNA helicases DDX19A/B modulate selinexor sensitivity by regulating MCL1 mRNA nuclear export in leukemia cells
Selinexor, a first-in-class exportin1 (XPO1) inhibitor, is an attractive anti-tumor agent because of its unique mechanisms of action; however, its dose-dependent toxicity and lack of biomarkers preclude its wide use in clinical applications. To identify key molecules/pathways regulating selinexor sensitivity, we performed genome-wide CRISPR/Cas9 dropout screens using two B-ALL lines. We identified, for the first time, that paralogous DDX19A and DDX19B RNA helicases modulate selinexor sensitivity by regulating MCL1 mRNA nuclear export. While single depletion of either DDX19A or DDX19B barely altered MCL1 protein levels, depletion of both significantly attenuated MCL1 mRNA nuclear export, reducing MCL1 protein levels. Importantly, combining selinexor treatment with depletion of either DDX19A or DDX19B markedly induced intrinsic apoptosis of leukemia cells, an effect rescued by MCL1 overexpression. Analysis of Depmap datasets indicated that a subset of T-ALL lines expresses minimal DDX19B mRNA levels. Moreover, we found that either selinexor treatment or DDX19A depletion effectively induced apoptosis of T-ALL lines expressing low DDX19B levels. We conclude that XPO1 and DDX19A/B coordinately regulate cellular MCL1 levels and propose that DDX19A/B could serve as biomarkers for selinexor treatment. Moreover, pharmacological targeting of DDX19 paralogs may represent a potential strategy to induce intrinsic apoptosis in leukemia cells.
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来源期刊
Leukemia
Leukemia 医学-血液学
CiteScore
18.10
自引率
3.50%
发文量
270
审稿时长
3-6 weeks
期刊介绍: Title: Leukemia Journal Overview: Publishes high-quality, peer-reviewed research Covers all aspects of research and treatment of leukemia and allied diseases Includes studies of normal hemopoiesis due to comparative relevance Topics of Interest: Oncogenes Growth factors Stem cells Leukemia genomics Cell cycle Signal transduction Molecular targets for therapy And more Content Types: Original research articles Reviews Letters Correspondence Comments elaborating on significant advances and covering topical issues
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