PO.MCB03.01 · 分子与细胞生物学

Rho-GEF ECT2 在胰腺导管腺癌中将 Rho GTP 酶与 MEK/ERK 通路激活相连接

The Rho-GEF ECT2 links Rho GTPases to MEK/ERK pathway activation in pancreatic ductal adenocarcinoma

海报缩略图:Rho-GEF ECT2 在胰腺导管腺癌中将 Rho GTP 酶与 MEK/ERK 通路激活相连接
编号 5993 展板 18 时间 4/21 02:00–05:00 区域 Section 23 主讲 Verline Justilien, PhD
分会场 RAS/MAPK Signaling, KRAS Targeting, and Adaptive Resistance
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作者与单位 Authors & Affiliations

Dania Al-Qasrawi1, Nayya N. Murray1, Ryan A. Argo1, Alicia K. Fleming Martinez1, Prita Pandya1, Anaya Y. Clarke1, Kayla C. Winter1, Murli Krishna2, Peter Storz1, Nicole R. Murray1, Verline Justilien1

1Cancer Biology, Mayo Clinic Florida, Jacksonville, FL,2Pathology/Lab Medicine, Mayo Clinic Florida, Jacksonville, FL

摘要 Abstract

中文摘要
胰腺导管腺癌(PDAC)由于其隐匿的临床发病、快速进展以及对现有治疗方案有限的反应性,仍然是人类最致命的恶性肿瘤之一。这些特征凸显了迫切需要早期检测策略以及可用于治疗的新分子靶点。上皮细胞转化序列 2(ECT2)是一种 Rho 家族鸟嘌呤核苷酸交换因子,最初被鉴定为一种致癌蛋白,后来被证明可调控胞质分裂。在本研究中,我们检测了 ECT2 表达在 PDAC 中的临床相关性,并确定了其对转化生长和致瘤性的功能贡献。我们的分析显示,ECT2 表达在 PDAC 发展的最早阶段即升高,在疾病进展过程中持续保持升高,并与患者总生存期缩短相关。此外,相当一部分 ECT2 异常定位于 PDAC 细胞的细胞质中。功能研究表明,敲低 ECT2 可抑制三维生长、侵袭行为和体内肿瘤形成,而对 PDAC 细胞的胞质分裂影响甚微。在机制上,我们发现 ECT2 是激活 Rac1 和 RhoA 以及下游 MEK/ERK 和 ROCK 信号传导所必需的。与这些结果一致,对 PDAC 患者数据集的分析揭示了 ECT2 表达与 Rho GTP 酶以及 MEK/ERK 和 ROCK 通路特征之间存在强正相关。总之,我们的数据将 ECT2 鉴定为 PDAC 转化的早期驱动因素,并突出其作为一个有前景的治疗靶点。
查看英文原文 English abstract
Pancreatic ductal adenocarcinoma (PDAC) remains one of the most lethal human malignancies due to its silent clinical onset, rapid progression, and limited responsiveness to current treatment options. These features underscore the urgent need for early detection strategies and for new molecular targets that can be exploited therapeutically. Epithelial Cell Transforming Sequence 2 (ECT2) is a Rho family guanine nucleotide exchange factor that was originally identified as an oncoprotein and later shown to regulate cytokinesis. In this study, we examined the clinical relevance of ECT2 expression in PDAC and determined its functional contribution to transformed growth and tumorigenicity. Our analyses revealed that ECT2 expression increases at the earliest stages of PDAC development, remains persistently elevated during disease progression, and associates with reduced overall patient survival. Furthermore, a substantial fraction of ECT2 is aberrantly localized to the cytoplasm of PDAC cells. Functional studies demonstrated that depletion of ECT2 suppresses three-dimensional growth, invasive behavior, and tumor formation in vivo, while having little impact on PDAC cell cytokinesis. Mechanistically, we found that ECT2 is required for activation of Rac1 and RhoA and downstream MEK/ERK and ROCK signaling, respectively. Consistent with these results, analyses of PDAC patient datasets revealed a strong positive association between ECT2 expression and Rho GTPase as well as MEK/ERK and ROCK pathway signatures. Together, our data identify ECT2 as an early driver of PDAC transformation and highlight it as a promising therapeutic target.
利益披露 Disclosure
D. Al-Qasrawi, None.. N. N. Murray, None.. R. A. Argo, None.. A. K. Fleming Martinez, None.. P. Pandya, None.. A. Y. Clarke, None.. K. C. Winter, None.. M. Krishna, None.. P. Storz, None.. N. R. Murray, None.. V. Justilien, None.

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