Bidirectional Regulation of c-Myc and TRB1 Establishes Oncogenic Reciprocal Regulation

The transcription factor c-Myc is frequently upregulated in human cancers through multiple mechanisms, including chromosomal translocation and gene amplification. Since the human TRIB1 gene is located on chromosome 8q24 in close proximity to the MYC oncogene, the MYC and TRIB1 genes may be co-amplified in a large percentage of human cancers. We herein demonstrate molecular crosstalk between TRB1 and c-Myc. Bioinformatic analyses reveal a positive correlation between MYC and TRIB1 expression across multiple cancer types. In prostate cancer cells, the knockdown of c-Myc reduces TRB1 expression. Mechanistically, c-Myc directly binds to the proximal promoter region of the TRIB1 gene and activates its transcription. Conversely, the depletion of TRB1 decreases c-Myc levels and affects the expression of c-Myc target genes. These results indicate that TRB1 contributes to the oncogenic functions of c-Myc and suggest the potential of the TRB1–c-Myc axis as a therapeutic target for cancer treatment.

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Publication Details

Journal
Biological and Pharmaceutical Bulletin
Published
2026-08-27
DOI
https://doi.org/10.1248/bpb.b26-00037
Primary Topic
Protein Kinase Regulation and GTPase Signaling
Type
article
Field-Weighted Citation Impact
0.00

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article

Bidirectional Regulation of c-Myc and TRB1 Establishes Oncogenic Reciprocal Regulation

Hiromasa Aoki, Kaori Tsuzuki, Hidetoshi Hayashi, Mai Nagasaka et al.
Biological and Pharmaceutical Bulletin
Protein Kinase Regulation and GTPase Signaling
article

Bidirectional Regulation of c-Myc and TRB1 Establishes Oncogenic Reciprocal Regulation

Hiromasa Aoki, Kaori Tsuzuki, Hidetoshi Hayashi, Mai Nagasaka, Yuya Suzuki, Daisuke Morishita, Yasumichi Inoue, Chiharu Miyajima, Kohki Toriuchi, Mineyoshi Aoyama, Mau Suzuka, Koh Yoshida
article en

Abstract

The transcription factor c-Myc is frequently upregulated in human cancers through multiple mechanisms, including chromosomal translocation and gene amplification. Since the human TRIB1 gene is located on chromosome 8q24 in close proximity to the MYC oncogene, the MYC and TRIB1 genes may be co-amplified in a large percentage of human cancers. We herein demonstrate molecular crosstalk between TRB1 and c-Myc. Bioinformatic analyses reveal a positive correlation between MYC and TRIB1 expression across multiple cancer types. In prostate cancer cells, the knockdown of c-Myc reduces TRB1 expression. Mechanistically, c-Myc directly binds to the proximal promoter region of the TRIB1 gene and activates its transcription. Conversely, the depletion of TRB1 decreases c-Myc levels and affects the expression of c-Myc target genes. These results indicate that TRB1 contributes to the oncogenic functions of c-Myc and suggest the potential of the TRB1–c-Myc axis as a therapeutic target for cancer treatment.

Biological and Pharmaceutical BulletinVol. 49(8)
Nagoya City University (JP)
Nagoya City University, Japan Society for the Promotion of Science
Zero hunger
Openalex Percentile: Top 17%
Protein Kinase Regulation and GTPase Signaling
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