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胰腺癌中的转化改变:综合应激反应的核心作用。

Translational alterations in pancreatic cancer: a central role for the integrated stress response.

作者信息

Shin Sauyeun, Solorzano Jacobo, Liauzun Mehdi, Pyronnet Stéphane, Bousquet Corinne, Martineau Yvan

机构信息

Centre de Recherche en Cancérologie de Toulouse (CRCT), INSERM U1037, Université Toulouse III Paul Sabatier, ERL5294 CNRS, Toulouse, France.

Equipe labellisée Ligue Contre le Cancer.

出版信息

NAR Cancer. 2022 Oct 28;4(4):zcac031. doi: 10.1093/narcan/zcac031. eCollection 2022 Dec.

Abstract

mRNA translation is a key mechanism for cancer cell proliferation and stress adaptation. Regulation of this machinery implicates upstream pathways such as PI3K/AKT/mTOR, RAS/MEK/ERK and the integrated stress response (ISR), principally coordinating the translation initiation step. During the last decade, dysregulation of the mRNA translation process in pancreatic cancer has been widely reported, and shown to critically impact on cancer initiation, development and survival. This includes translation dysregulation of mRNAs encoding oncogenes and tumor suppressors. Hence, cancer cells survive a stressful microenvironment through a flexible regulation of translation initiation for rapid adaptation. The ISR pathway has an important role in chemoresistance and shows high potential therapeutic interest. Despite the numerous translational alterations reported in pancreatic cancer, their consequences are greatly underestimated. In this review, we summarize the different translation dysregulations described in pancreatic cancer, which make it invulnerable, as well as the latest drug discoveries bringing a glimmer of hope.

摘要

mRNA翻译是癌细胞增殖和应激适应的关键机制。对这一机制的调控涉及上游信号通路,如PI3K/AKT/mTOR、RAS/MEK/ERK和综合应激反应(ISR),主要协调翻译起始步骤。在过去十年中,胰腺癌中mRNA翻译过程的失调已被广泛报道,并显示出对癌症的发生、发展和生存具有关键影响。这包括编码癌基因和肿瘤抑制因子的mRNA的翻译失调。因此,癌细胞通过灵活调控翻译起始以快速适应,从而在应激性微环境中存活。ISR信号通路在化疗耐药中起重要作用,并显示出很高的潜在治疗价值。尽管在胰腺癌中报道了众多翻译改变,但其后果却被大大低估。在本综述中,我们总结了胰腺癌中描述的不同翻译失调情况,这些失调使其难以攻克,以及带来一线希望的最新药物发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bcf/9615149/eeacc676974d/zcac031fig1.jpg

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