PO.ET05.02 · 实验与分子治疗

癌症中的KRAS和ERK5信号通路:对靶向治疗的意义

KRAS and ERK5 signaling pathways in cancer: Implications for targeted therapy

海报缩略图:癌症中的KRAS和ERK5信号通路:对靶向治疗的意义
编号 2938 展板 15 时间 4/20 02:00–05:00 区域 Section 11 主讲 Christophe Marcireau, PhD
分会场 Cellular Responses to Anticancer Drugs
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作者与单位 Authors & Affiliations

Christophe Marcireau1, Fréderic Lacroix1, Fatima Amor1, Karine Dobrazix1, Guillaume Nurit1, Véronique Jean-Baptiste1, Eiwen Yang2, Donald Jackson2, Colette Dib1, Gaelle Muzard1, Franck Slowinski1, Laurent Debussche1, Pawel K. Mazur3

1Sanofi, Paris, France,2Sanofi, Boston, MA,3PostDoc, UT MD Anderson Cancer Center, Houston, TX

摘要 Abstract

中文摘要
癌症中的KRAS信号传导:KRAS作为一种小GTP酶发挥功能,充当细胞信号传导中的分子开关,协调增殖、分化和存活机制。作为RTK-RAS-RAF-MEK-ERK信号级联的中心节点,KRAS突变是人类癌症中最常见的致癌事件,尤其在胰腺、结直肠和肺部恶性肿瘤中。这些突变驱动通路的持续激活,促进不受控的细胞生长。在肺癌中,KRAS G12C突变尤为普遍,促成了Sotorasib和Adagrasib等靶向疗法的开发和获批。这些KRAS G12C抑制剂的临床成功,为开发靶向各种K/N/H RAS亚型的更多分子奠定了有前景的基础。 ERK5信号传导与癌症进展:ERK5是MAPK家族的另一成员,响应促分裂和应激信号由MEK5激活。MEK5-ERK5通路调控关键的生理和病理过程,包括细胞存活和增殖。此外,该信号轴在肿瘤微环境内的转移进展和免疫调节中发挥重要作用。值得注意的是,抑制RAS通路常常触发MEK5-ERK5信号的代偿性上调,使癌细胞在靶向干预下仍能维持致癌信号传导。 研究重点:在本研究中,我们将建立ERK5转录基因特征,并通过多种实验方法证明广泛的RAS通路抑制如何导致ERK5信号的过度激活。
查看英文原文 English abstract
KRAS Signaling in Cancer: KRAS functions as a small GTPase that serves as a molecular switch in cellular signaling, orchestrating proliferation, differentiation, and survival mechanisms. As the central node of the RTK-RAS-RAF-MEK-ERK signaling cascade, KRAS mutations represent the most frequent oncogenic events across human cancers, particularly in pancreatic, colorectal, and lung malignancies. These mutations drive constitutive pathway activation, promoting uncontrolled cellular growth. In lung cancer, KRAS G12C mutations are especially prevalent, leading to the development and approval of targeted therapies such as Sotorasib and Adagrasib. The clinical success of these KRAS G12C inhibitors has established a promising foundation for developing additional molecules targeting various K/N/H RAS isoforms. ERK5 Signaling and Cancer Progression: ERK5, another member of the MAPK family, is activated by MEK5 in response to mitogenic and stress signals. The MEK5-ERK5 pathway regulates critical physiological and pathological processes, including cell survival and proliferation. Additionally, this signaling axis plays significant roles in metastatic progression and immune modulation within tumor microenvironments. Notably, inhibition of the RAS pathway frequently triggers compensatory upregulation of MEK5-ERK5 signaling, enabling cancer cells to maintain oncogenic signaling despite targeted intervention. Research Focus: In this investigation, we will establish an ERK5 transcriptional gene signature and demonstrate how broad RAS pathway inhibition leads to ERK5 signaling overactivation through multiple experimental approaches.
利益披露 Disclosure
C. Marcireau, Sanofi Employment. F. Lacroix, sanofi Employment. F. Amor, Sanofi Employment. K. Dobrazix, sanofi Employment. G. Nurit, Sanofi Employment. V. Jean-Baptiste, Sanofi Employment. E. Yang, Sanofi Employment. D. Jackson, Sanofi Employment. C. Dib, Sanofi Employment. G. Muzard, Sanofi Employment. F. Slowinski, Sanofi Employment. L. Debussche, Sanofi Employment.

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