Loss of NOL10 leads to impaired disease progression of NUP98::DDX10 leukemia

IF 12.8 1区 医学 Q1 HEMATOLOGY
Yutaka Shima, Kazutsune Yamagata, Yoko Kuroki, Kazuki Sasaki, Yukiko Aikawa, Issay Kitabayashi
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Abstract

NUP98 rearrangements associated with acute myeloid leukemia and myelodysplastic syndromes generate NUP98-fusion proteins. One such fusion protein, NUP98::DDX10, contains the putative RNA helicase DDX10. The molecular mechanism by which NUP98::DDX10 induces leukemia is not well understood. Here, we show that 24 amino acids within the DDX10 moiety of NUP98::DDX10 are crucial for cell immortalization and leukemogenesis. NOL10, nucleolar protein 10, interacts with the 24 amino acids, and NOL10 is a critical dependency of NUP98::DDX10 leukemia development. Studies in a mouse model of NUP98::DDX10 leukemia showed that loss of Nol10 impaired disease progression and improved survival. We also identified a novel function of NOL10 in that it acts cooperatively with NUP98::DDX10 to regulate serine biosynthesis pathways and stabilize ATF4 mRNA. Collectively, these findings suggest that NOL10 is a critical regulator of NUP98::DDX10 leukemia and that targeting NOL10 (or the serine synthesis pathway regulated by NOL10) may be an effective therapeutic approach.

Abstract Image

缺失 NOL10 会导致 NUP98::DDX10 白血病的疾病进展受阻
与急性髓性白血病和骨髓增生异常综合征相关的NUP98重排产生NUP98融合蛋白。其中一个这样的融合蛋白,NUP98::DDX10,含有假定的RNA解旋酶DDX10。NUP98::DDX10诱导白血病的分子机制尚不清楚。在这里,我们发现NUP98::DDX10的DDX10片段中的24个氨基酸对细胞的永生化和白血病的发生至关重要。NOL10,核核蛋白10,与24个氨基酸相互作用,并且NOL10是NUP98::DDX10白血病发展的关键依赖。在NUP98::DDX10白血病小鼠模型中的研究表明,Nol10的缺失会损害疾病进展并改善生存。我们还发现了NOL10的一个新功能,它与NUP98::DDX10协同作用,调节丝氨酸生物合成途径,稳定ATF4 mRNA。综上所述,这些发现表明NOL10是NUP98::DDX10白血病的关键调节因子,靶向NOL10(或由NOL10调节的丝氨酸合成途径)可能是一种有效的治疗方法。
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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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