том 629 издание 8013 страницы 919-926

Concurrent inhibition of oncogenic and wild-type RAS-GTP for cancer therapy

Тип публикацииJournal Article
Дата публикации2024-04-08
SCImago Q1
Tоп 10% SCImago
WOS Q1
БС1
SJR19.713
CiteScore77.7
Impact factor56.1
ISSN00280836, 14764687
Multidisciplinary
Краткое описание

RAS oncogenes (collectively NRAS, HRAS and especially KRAS) are among the most frequently mutated genes in cancer, with common driver mutations occurring at codons 12, 13 and 611. Small molecule inhibitors of the KRAS(G12C) oncoprotein have demonstrated clinical efficacy in patients with multiple cancer types and have led to regulatory approvals for the treatment of non-small cell lung cancer2,3. Nevertheless, KRASG12C mutations account for only around 15% of KRAS-mutated cancers4,5, and there are no approved KRAS inhibitors for the majority of patients with tumours containing other common KRAS mutations. Here we describe RMC-7977, a reversible, tri-complex RAS inhibitor with broad-spectrum activity for the active state of both mutant and wild-type KRAS, NRAS and HRAS variants (a RAS(ON) multi-selective inhibitor). Preclinically, RMC-7977 demonstrated potent activity against RAS-addicted tumours carrying various RAS genotypes, particularly against cancer models with KRAS codon 12 mutations (KRASG12X). Treatment with RMC-7977 led to tumour regression and was well tolerated in diverse RAS-addicted preclinical cancer models. Additionally, RMC-7977 inhibited the growth of KRASG12C cancer models that are resistant to KRAS(G12C) inhibitors owing to restoration of RAS pathway signalling. Thus, RAS(ON) multi-selective inhibitors can target multiple oncogenic and wild-type RAS isoforms and have the potential to treat a wide range of RAS-addicted cancers with high unmet clinical need. A related RAS(ON) multi-selective inhibitor, RMC-6236, is currently under clinical evaluation in patients with KRAS-mutant solid tumours (ClinicalTrials.gov identifier: NCT05379985).

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Holderfield M. et al. Concurrent inhibition of oncogenic and wild-type RAS-GTP for cancer therapy // Nature. 2024. Vol. 629. No. 8013. pp. 919-926.
ГОСТ со всеми авторами (до 50) Скопировать
Holderfield M. et al. Concurrent inhibition of oncogenic and wild-type RAS-GTP for cancer therapy // Nature. 2024. Vol. 629. No. 8013. pp. 919-926.
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@article{2024_Holderfield,
author = {Matthew Holderfield and Bianca J Lee and Jingjing Jiang and Aidan Tomlinson and Kyle J. Seamon and Alessia Mira and Enrico Patrucco and Grace Goodhart and Julien Dilly and Yevgeniy Gindin and Nuntana Dinglasan and Yingyun Wang and Lick Pui Lai and Shurui Cai and Lingyan Jiang and Nicole Nasholm and Nataliya Shifrin and Cristina Blaj and Harshit Shah and James W. Evans and Nilufar Montazer and Oliver Lai and Jade Shi and Ethan Ahler and Elsa Quintana and Stephanie Chang and Anthony Salvador and Abby Marquez and Jim Cregg and Yang Liu and Anthony Milin and Anqi Chen and Tamar Bar Ziv and Dylan Parsons and John E. Knox and Jennifer E Klomp and Jennifer A. Roth and Matthew Rees and Melissa M Ronan and Antonio Cuevas-Navarro and Feng Hu and Piro Lito and David Santamaria and Andrew J. Aguirre and Andrew M Waters and CHANNING J. DER and Chiara Ambrogio and Zhengping Wang and Adrian L Gill and Elena S. Koltun and others},
title = {Concurrent inhibition of oncogenic and wild-type RAS-GTP for cancer therapy},
journal = {Nature},
year = {2024},
volume = {629},
publisher = {Springer Nature},
month = {apr},
url = {https://www.nature.com/articles/s41586-024-07205-6},
number = {8013},
pages = {919--926},
doi = {10.1038/s41586-024-07205-6}
}
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Holderfield, Matthew, et al. “Concurrent inhibition of oncogenic and wild-type RAS-GTP for cancer therapy.” Nature, vol. 629, no. 8013, Apr. 2024, pp. 919-926. https://www.nature.com/articles/s41586-024-07205-6.
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