BRAFV600E in colorectal cancer reduces sensitivity to oxidative stress and promotes site-specific metastasis by stimulating glutathione synthesis

Publication date

2022-11-29

Authors

Laoukili, JamilaISNI 0000000389434894
van Schelven, SusanneISNI 0000000392984707
Küçükköse, Emre
Verheem, AndréISNI 000000038711511X
Goey, Kaitlyn
Koopman, MiriamORCID 0000-0003-1550-1978ISNI 0000000077221902
Borel Rinkes, InneORCID 0000-0003-2122-7207ISNI 0000000388761076
Kranenburg, OnnoORCID 0000-0002-2112-4390ISNI 0000000395167454

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Abstract

The presence of BRAFV600E in colorectal cancer (CRC) is associated with a higher chance of distant metastasis. Oxidative stress in disseminated tumor cells limits metastatic capacity. To study the relationship between BRAFV600E, sensitivity to oxidative stress, and metastatic capacity in CRC, we use patient-derived organoids (PDOs) and tissue samples. BRAFV600E tumors and PDOs express high levels of glutamate-cysteine ligase (GCL), the rate-limiting enzyme in glutathione synthesis. Deletion of GCL in BRAFV600E PDOs strongly reduces their capacity to form distant liver and lung metastases but does not affect peritoneal metastasis outgrowth. Vice versa, the glutathione precursor N-acetyl-cysteine promotes organ-site-specific metastasis in the liver and the lungs but not in the peritoneum. BRAFV600E confers resistance to pharmacologically induced oxidative stress in vitro, which is partially overcome by treatment with the BRAF-inhibitor vemurafenib. We conclude that GCL-driven glutathione synthesis protects BRAFV600E-expressing tumors from oxidative stress during distant metastasis to the liver and the lungs.

Keywords

BRAF, colorectal, CP: Cancer, glutathione, metastasis, metastatic organotropsim, oxidative stress, General Biochemistry,Genetics and Molecular Biology

Citation

Laoukili, J, van Schelven, S, Küçükköse, E, Verheem, A, Goey, K, Koopman, M, Borel Rinkes, I & Kranenburg, O 2022, 'BRAF V600E in colorectal cancer reduces sensitivity to oxidative stress and promotes site-specific metastasis by stimulating glutathione synthesis', Cell Reports, vol. 41, no. 9, 111728, pp. 1-22. https://doi.org/10.1016/j.celrep.2022.111728