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A phospho-proteomic study of cetuximab resistance in KRAS/NRAS/BRAFV600 wild-type colorectal cancer.


ABSTRACT:

Purpose

We hypothesised that plasticity in signal transduction may be a mechanism of drug resistance and tested this hypothesis in the setting of cetuximab resistance in patients with KRAS/NRAS/BRAFV600 wild-type colorectal cancer (CRC).

Methods

A multiplex antibody-based platform was used to study simultaneous changes in signal transduction of 55 phospho-proteins in 12 KRAS/NRAS/BRAFV600 wild-type CRC cell lines (6 cetuximab sensitive versus 6 cetuximab resistant) following 1 and 4 h in vitro cetuximab exposure. We validated our results in CRC patient samples (n = 4) using ex vivo exposure to cetuximab in KRAS/NRAS/BRAFV600 cells that were immunomagnetically separated from the serous effusions of patients with known cetuximab resistance.

Results

Differences in levels of phospho-proteins in cetuximab sensitive and resistant cell lines included reductions in phospho-RPS6 and phospho-PRAS40 in cetuximab sensitive, but not cetuximab resistant cell lines at 1 and 4 h, respectively. In addition, phospho-AKT levels were found to be elevated in 3/4 patient samples following ex vivo incubation with cetuximab for 1 h. We further explored these findings by studying the effects of combinations of cetuximab and two PI3K pathway inhibitors in 3 cetuximab resistant cell lines. The addition of PI3K pathway inhibitors to cetuximab led to a significantly higher reduction in colony formation capacity compared to cetuximab alone.

Conclusion

Our findings suggest activation of the PI3K pathway as a mechanism of cetuximab resistance in KRAS/NRAS/BRAFV600 wild-type CRC.

SUBMITTER: Georgiou A 

PROVIDER: S-EPMC8516765 | biostudies-literature | 2021 Oct

REPOSITORIES: biostudies-literature

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Publications

A phospho-proteomic study of cetuximab resistance in KRAS/NRAS/BRAF<sup>V600</sup> wild-type colorectal cancer.

Georgiou Alexandros A   Stewart Adam A   Vlachogiannis Georgios G   Pickard Lisa L   Valeri Nicola N   Cunningham David D   Whittaker Steven R SR   Banerji Udai U  

Cellular oncology (Dordrecht, Netherlands) 20210830 5


<h4>Purpose</h4>We hypothesised that plasticity in signal transduction may be a mechanism of drug resistance and tested this hypothesis in the setting of cetuximab resistance in patients with KRAS/NRAS/BRAF<sup>V600</sup> wild-type colorectal cancer (CRC).<h4>Methods</h4>A multiplex antibody-based platform was used to study simultaneous changes in signal transduction of 55 phospho-proteins in 12 KRAS/NRAS/BRAF<sup>V600</sup> wild-type CRC cell lines (6 cetuximab sensitive versus 6 cetuximab resi  ...[more]

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