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Structural and computational analysis of immune-related RNA-binding proteins

研究課題

研究課題/領域番号 23K06597
研究種目

基盤研究(C)

配分区分基金
応募区分一般
審査区分 小区分49070:免疫学関連
研究機関大阪大学

研究代表者

MILLIUS ARTHUR  大阪大学, 微生物病研究所, 特任研究員(常勤) (80624858)

研究期間 (年度) 2023-04-01 – 2026-03-31
研究課題ステータス 交付 (2023年度)
配分額 *注記
3,900千円 (直接経費: 3,000千円、間接経費: 900千円)
2025年度: 1,300千円 (直接経費: 1,000千円、間接経費: 300千円)
2024年度: 1,300千円 (直接経費: 1,000千円、間接経費: 300千円)
2023年度: 1,300千円 (直接経費: 1,000千円、間接経費: 300千円)
キーワードRibosome profiling / Circadian rhythms / Period2 / Translation / uORF / RNA structure / Regnase / Machine learning / Immunology / RNA / Structural biology
研究開始時の研究の概要

Our research may reveal how RNA-binding proteins manipulate RNA structures, which will not only be important for understanding the basic biology of these proteins, but also for tailoring the next generation of RNA therapeutics for optimal efficacy.

研究実績の概要

We are exploring how different RNA structures in 5' and 3' UTRs affect translation and RNA degradation in cells and animals to understand how post-transcriptional and translational mechanisms influence when and how much of a protein gets made. First, we used ribosome profiling to examine how upstream open reading frames control Period2 RNA processing in sleep and circadian rhythms (Millius et al., 2023), and now we have started to examine how an endoribonuclease Regnase-1 degrades RNAs in the immune system. Defects in circadian rhythms are related to health problems and T cell-specific targeting of Regnase-1 can be used as a cancer therapeutic, so a broad understanding of the cellular mechanisms that control RNA processing is essential for developing new treatments.

現在までの達成度 (区分)
現在までの達成度 (区分)

2: おおむね順調に進展している

理由

In collaboration with the Ueda lab, we mutated the Per2 uORF using Crispr/Cas9 genetic editing and found that both male and female mutant mice had significantly reduced sleep compared to their wild-type littermates (Millius et al., 2023). We analyzed the 3’UTR of Regnase-1 to understand how Regnase-1 autoregulation controls its own expression (Piboonprai et al., 2023). Now we are screening chemical libraries to identify chemical inhibitors of Regnase-1.

今後の研究の推進方策

We plan to crystallize Regnase wild-type and select Regnase mutant proteins in collaboration with Genji Kurisu's lab. We have generated new Regnase mouse models that affect the multimerization state of the Regnase protein, and we will examine how these mutations affect the physiology and immune system function of the mice. In addition, we are screening chemical libraries for potential inhibitors of Regnase binding to RNA.

報告書

(1件)
  • 2023 実施状況報告書
  • 研究成果

    (2件)

すべて 2023

すべて 雑誌論文 (2件) (うち国際共著 1件、 査読あり 2件、 オープンアクセス 2件)

  • [雑誌論文] Circadian ribosome profiling reveals a role for the <i>Period2</i> upstream open reading frame in sleep2023

    • 著者名/発表者名
      Millius Arthur、Yamada Rikuhiro G.、Fujishima Hiroshi、Maeda Kazuhiko、Standley Daron M.、Sumiyama Kenta、Perrin Dimitri、Ueda Hiroki R.
    • 雑誌名

      Proceedings of the National Academy of Sciences

      巻: 120 号: 40

    • DOI

      10.1073/pnas.2214636120

    • 関連する報告書
      2023 実施状況報告書
    • 査読あり / オープンアクセス / 国際共著
  • [雑誌論文] Breaking self‐regulation of Regnase‐1 promotes its own protein expression2023

    • 著者名/発表者名
      Piboonprai Kitiya、Millius Arthur、Shimoda Mayuko、Tanaka Hiroki、Akira Shizuo、Maeda Kazuhiko
    • 雑誌名

      Genes to Cells

      巻: - 号: 5 ページ: 383-389

    • DOI

      10.1111/gtc.13018

    • 関連する報告書
      2023 実施状況報告書
    • 査読あり / オープンアクセス

URL: 

公開日: 2023-04-13   更新日: 2024-12-25  

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