分子病態治療研究センター 幹細胞制御研究部

菊池 次郎

キクチ ジロウ  (Jiro Kikuchi)

基本情報

所属
自治医科大学 分子病態治療研究センター 領域融合治療研究部 准教授
学位
医学博士(自治医科大学)

J-GLOBAL ID
201401084114006952
researchmap会員ID
B000237863

外部リンク

論文

 89
  • Jiro Kikuchi, Mitsuo Hori, Naoki Osada, Sae Matsuoka, Atsushi Suzuki, Satoshi Kakugawa, Hiroshi Yasui, Takeshi Harada, Hirofumi Tenshin, Masahiro Abe, Hideki Nakasone, Yusuke Furukawa
    Haematologica 2024年6月13日  
    Not available.
  • 松岡 紗恵, 菊池 次郎, 長田 直希, 窪田 浩一, 喜久里 貢, 小山 裕雄, 菊地 正樹, 安井 寛, 池田 翔, 高橋 直人, 梅原 崇史, 仲宗根 秀樹, 古川 雄祐
    日本血液学会学術集会 85回 44-44 2023年10月  
  • 長田 直希, 菊池 次郎, 松岡 紗恵, 安井 寛, 池田 翔, 高橋 直人, 仲宗根 秀樹, 古川 雄祐
    日本血液学会学術集会 85回 1171-1171 2023年10月  
  • 長田 直希, 菊池 次郎, 松岡 紗恵, 安井 寛, 池田 翔, 高橋 直人, 仲宗根 秀樹, 古川 雄祐
    日本癌学会総会記事 82回 2127-2127 2023年9月  
  • Naoki Osada, Jiro Kikuchi, Hidekatsu Iha, Hiroshi Yasui, Sho Ikeda, Naoto Takahashi, Yusuke Furukawa
    Clinical and Translational Medicine 13(8) 2023年8月15日  
    Abstract Background The immunomodulatory drug lenalidomide, which is now widely used for the treatment of multiple myeloma (MM), exerts pharmacological action through the ubiquitin‐dependent degradation of IKZF1 and subsequent down‐regulation of interferon regulatory factor 4 (IRF4), a critical factor for the survival of MM cells. IKZF1 acts principally as a tumour suppressor via transcriptional repression of oncogenes in normal lymphoid lineages. In contrast, IKZF1 activates IRF4 and other oncogenes in MM cells, suggesting the involvement of unknown co‐factors in switching the IKZF1 complex from a transcriptional repressor to an activator. The transactivating components of the IKZF1 complex might promote lenalidomide resistance by residing on regulatory regions of the IRF4 gene to maintain its transcription after IKZF1 degradation. Methods To identify unknown components of the IKZF1 complex, we analyzed the genome‐wide binding of IKZF1 in MM cells using chromatin immunoprecipitation‐sequencing (ChIP‐seq) and screened for the co‐occupancy of IKZF1 with other DNA‐binding factors on the myeloma genome using the ChIP‐Atlas platform. Results We found that c‐FOS, a member of the activator protein‐1 (AP‐1) family, is an integral component of the IKZF1 complex and is primarily responsible for the activator function of the complex in MM cells. The genome‐wide screening revealed the co‐occupancy of c‐FOS with IKZF1 on the regulatory regions of IKZF1‐target genes, including IRF4 and SLAMF7, in MM cells but not normal bone marrow progenitors, pre‐B cells or mature T‐lymphocytes. c‐FOS and IKZF1 bound to the same consensus sequence as the IKZF1 complex through direct protein‐protein interactions. The complex also includes c‐JUN and IKZF3 but not IRF4. Treatment of MM cells with short‐hairpin RNA against FOS or a selective AP‐1 inhibitor significantly enhanced the anti‐MM activity of lenalidomide in vitro and in two murine MM models. Furthermore, an AP‐1 inhibitor mitigated the lenalidomide resistance of MM cells. Conclusions C‐FOS determines lenalidomide sensitivity and mediates drug resistance in MM cells as a co‐factor of IKZF1 and thus, could be a novel therapeutic target for further improvement of the prognosis of MM patients.

MISC

 49

講演・口頭発表等

 45

共同研究・競争的資金等の研究課題

 34

主要な産業財産権

 8

メディア報道

 6