DKK1 as a chemoresistant protein modulates oxaliplatin responses in colorectal cancer

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作者
Chi-Che Hsieh [1 ]
Ting-Wei Li [2 ]
Chun-Chun Li [1 ]
Shang-Hung Chen [3 ]
You-Lin Wei [3 ]
Nai-Jung Chiang [1 ]
Che-Hung Shen [4 ]
机构
[1] National Health Research Institutes,National Institute of Cancer Research
[2] Taipei Medical University,School of Dentistry, College of Oral Medicine
[3] National Cheng Kung University,Department of Life Sciences
[4] National Cheng Kung University,Department of Oncology, National Cheng Kung University Hospital, College of Medicine
[5] Taipei Veterans General Hospital,Department of Oncology
[6] National Yang Ming Chiao Tung University,School of Medicine
[7] National Chung Hsing University,Doctoral Program in Tissue Engineering and Regenerative Medicine, Biotechnology Center
[8] Kaohsiung Medical University,Center for Cancer Research
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D O I
10.1038/s41389-024-00537-y
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摘要
Oxaliplatin is effective against colorectal cancer (CRC), but resistance hampers treatment. We found upregulated Dickkopf-1 (DKK1, a secreted protein) in oxaliplatin-resistant (OR) CRC cell lines and DKK1 levels increased by more than 2-fold in approximately 50% of oxaliplatin-resistant CRC tumors. DKK1 activates AKT via cytoskeleton-associated protein 4 (CKAP4, a DKK1 receptor), modulating oxaliplatin responses in vitro and in vivo. The leucine zipper (LZ) domain of CKAP4 and cysteine-rich domain 1 (CRD1) of secreted DKK1 are crucial for their interaction and AKT signaling. By utilizing the LZ protein, we disrupted DKK1 signaling, enhancing oxaliplatin sensitivity in OR CRC cells and xenograft tumors. This suggests that DKK1 as a chemoresistant factor in CRC via AKT activation. Targeting DKK1 with the LZ protein offers a promising therapeutic strategy for oxaliplatin-resistant CRC with high DKK1 levels. This study sheds light on oxaliplatin resistance mechanisms and proposes an innovative intervention for managing this challenge.
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