Please use this identifier to cite or link to this item: https://doi.org/10.1038/s41388-021-02084-x
Title: MiR-138 is a potent regulator of the heterogenous MYC transcript population in cancers
Authors: Desi, Ng 
Teh, Velda
Tong, Qing Yun
Lim, Chun You
Tabatabaeian, Hossein
Chew, Xiao Hong
Sanchez-Mejias, Avencia 
Chan, Jia Jia
Zhang, Bin
Pitcheshwar, Priyankaa
Siew, Bei-En
Wang, Shi 
Lee, Kuok-Chung
Chong, Choon-Seng
Cheong, Wai-Kit
Lieske, Bettina 
Tan, Ian Jse-Wei
Tan, Ker-Kan
Tay, Yvonne
Keywords: Science & Technology
Life Sciences & Biomedicine
Biochemistry & Molecular Biology
Oncology
Cell Biology
Genetics & Heredity
C-MYC
CELL-PROLIFERATION
EXPRESSION
INHIBITION
DELIVERY
TARGET
GENE
OVEREXPRESSION
IDENTIFICATION
AMPLIFICATION
Issue Date: 22-Dec-2021
Publisher: SPRINGERNATURE
Citation: Desi, Ng, Teh, Velda, Tong, Qing Yun, Lim, Chun You, Tabatabaeian, Hossein, Chew, Xiao Hong, Sanchez-Mejias, Avencia, Chan, Jia Jia, Zhang, Bin, Pitcheshwar, Priyankaa, Siew, Bei-En, Wang, Shi, Lee, Kuok-Chung, Chong, Choon-Seng, Cheong, Wai-Kit, Lieske, Bettina, Tan, Ian Jse-Wei, Tan, Ker-Kan, Tay, Yvonne (2021-12-22). MiR-138 is a potent regulator of the heterogenous MYC transcript population in cancers. ONCOGENE 41 (8) : 1178-1189. ScholarBank@NUS Repository. https://doi.org/10.1038/s41388-021-02084-x
Abstract: 3′UTR shortening in cancer has been shown to activate oncogenes, partly through the loss of microRNA-mediated repression. This suggests that many reported microRNA-oncogene target interactions may not be present in cancer cells. One of the most well-studied oncogenes is the transcription factor MYC, which is overexpressed in more than half of all cancers. MYC overexpression is not always accompanied by underlying genetic aberrations. In this study, we demonstrate that the MYC 3′UTR is shortened in colorectal cancer (CRC). Using unbiased computational and experimental approaches, we identify and validate microRNAs that target the MYC coding region. In particular, we show that miR-138 inhibits MYC expression and suppresses tumor growth of CRC and hepatocellular carcinoma (HCC) cell lines. Critically, the intravenous administration of miR-138 significantly impedes MYC-driven tumor growth in vivo. Taken together, our results highlight the previously uncharacterized shortening of the MYC 3′UTR in cancer, and identify miR-138 as a potent regulator of the heterogenous MYC transcript population.
Source Title: ONCOGENE
URI: https://scholarbank.nus.edu.sg/handle/10635/241665
ISSN: 0950-9232
1476-5594
DOI: 10.1038/s41388-021-02084-x
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