Targeting of the m6A eraser ALKBH5 suppresses stemness and chemoresistance of colorectal cancer

H Heming Zhou H Huarong Chen W Weixin Liu C Cong Liang S Shiyan Wang K Kai Yuan A Alvin Ho Kwan Cheung Y Yuet Wu W Wei Kang H Henley Cheung Y Yanqiang Ding Q Qinyao Wei H Hao Su T Tianhui Li W Weimei Luo S Sujun Chen C Chi Chun Wong J Jun Yu (Department of Earth System Science, University of California)

Abstract

Abstract The role of RNA N 6 -methyladenoine (m 6 A) eraser AlkB homologue 5 (ALKBH5) in colorectal cancer (CRC) stem cells (CSCs) is unclear. Here, we find that ALKBH5 expression positively correlates with CSC markers in CRC patients. ALKBH5 induces self-renewal and stemness markers in colorectal CSCs and patient-derived organoids (PDOs). Colon-stem cell specific Alkbh5 knockin accelerates carcinogen-induced CRC, while tumorigenesis is attenuated in colon-stem cell specific Alkbh5 knockout mice. Integrated RNA-seq, MeRIP-seq and Ribo-seq reveal FAM84A as an ALKBH5 target. ALKBH5 demethylates m 6 A-modified FAM84A mRNA, causing mRNA decay and reduced expression. Mechanistically, we show that FAM84A represses CSCs by interacting with β-catenin and promoting β-catenin ubiquitination and degradation. By boosting CSCs, ALKBH5 overexpression elicit chemoresistance in CSCs, PDOs and transgenic mice. Targeting of ALKBH5 by knockout or VNPs-siALKBH5 synergizes with chemotherapy to trigger tumor regression in CSCs-/PDOs-derived xenografts and ALKBH5 knockout mice. Together, we reveal that ALKBH5 is essential for colorectal CSCs and is a therapeutic target for overcoming CRC chemoresistance.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 13, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (18)

H

Heming Zhou

H

Huarong Chen

W

Weixin Liu

C

Cong Liang

S

Shiyan Wang

K

Kai Yuan

A

Alvin Ho Kwan Cheung

Y

Yuet Wu

W

Wei Kang

H

Henley Cheung

Y

Yanqiang Ding

Q

Qinyao Wei

H

Hao Su

T

Tianhui Li

W

Weimei Luo

S

Sujun Chen

C

Chi Chun Wong

J

Jun Yu

Department of Earth System Science, University of California