Oncogenic BRAF induces whole-genome doubling through suppression of cytokinesis.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 35840569.
- Also identified by DOI 10.1038/s41467-022-31899-9 and PMC identifier 9287415.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Melanomas and other solid tumors commonly have increased ploidy, with near-tetraploid karyotypes being most frequently observed. Such karyotypes have been shown to arise through whole-genome doubling events that occur during early stages of tumor progression. The generation of tetraploid cells via whole-genome doubling is proposed to allow nascent tumor cells the ability to sample various pro-tumorigenic genomic configurations while avoiding the negative consequences that chromosomal gains or losses have in diploid cells. Whereas a high prevalence of whole-genome doubling events has been established, the means by which whole-genome doubling arises is unclear. Here, we find that BRAF<sup>V600E</sup>, the most common mutation in melanomas, can induce whole-genome doubling via cytokinesis failure in vitro and in a zebrafish melanoma model. Mechanistically, BRAF<sup>V600E</sup> causes decreased activation and localization of RhoA, a critical cytokinesis regulator. BRAF<sup>V600E</sup> activity during G1/S phases of the cell cycle is required to suppress cytokinesis. During G1/S, BRAF<sup>V600E</sup> activity causes inappropriate centriole amplification, which is linked in part to inhibition of RhoA and suppression of cytokinesis. Together these data suggest that common abnormalities of melanomas linked to tumorigenesis - amplified centrosomes and whole-genome doubling events - can be induced by oncogenic BRAF and other mutations that increase RAS/MAPK pathway activity.
Medical subject headings
- Melanoma
- Proto-Oncogene Proteins B-raf