Positive Feedback Regulation between KLF5 and XPO1 Promotes Cell Cycle Progression of Basal like Breast Cancer

IF 14.1 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Yu Tang, Rui Liu, Jing Zhu, Qian He, Chenglong Pan, Zhongmei Zhou, Jian Sun, Fubing Li, Longlong Zhang, Yujie Shi, Jing Yao, Dewei Jiang, Ceshi Chen
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Abstract

Basal-like breast cancer (BLBC), overlapping with the subgroup of estrogen receptor (ER), progesterone receptor (PR), and HER2 triple-negative breast cancer, has the worst prognosis and limited therapeutics. The XPO1 gene encodes nuclear export protein 1, a promising anticancer target which mediates nucleus-cytoplasm transport of nuclear export signal containing proteins such as tumor suppressor RB1 and some RNAs. Despite drugs targeting XPO1 are used in clinical, the regulation of XPO1 expression and functional mechanism is poorly understood, especially in BLBC. This study finds that KLF5 is a transcription factor of XPO1, which increases RB1 nuclear export and cell proliferation in BLBC cells. Furthermore, XPO1 interacts with the RNA-binding protein PTBP1 to export FOXO1 mRNA to cytoplasm and thus activates the FOXO1-KLF5 axis as a feedback. This work demonstrates that XPO1 inhibitor KPT-330 in combination with CDK4/6 inhibitor additively suppressed BLBC tumor growth in vivo. These results reveal a novel positive feedback regulation loop between KLF5 and XPO1 and provide a novel treatment strategy for BLBC.

Abstract Image

KLF5与XPO1正反馈调控促进基底样乳腺癌细胞周期进展
基底样乳腺癌(BLBC)与雌激素受体(ER)、孕激素受体(PR)和HER2三阴性乳腺癌亚群重叠,预后最差,治疗方法有限。XPO1基因编码核输出蛋白1,是一个很有前景的抗癌靶点,它介导含有肿瘤抑制蛋白RB1和一些rna的核输出信号的核-胞质转运。尽管临床使用了靶向XPO1的药物,但对XPO1表达的调控及其作用机制尚不清楚,特别是在BLBC中。本研究发现KLF5是XPO1的转录因子,在BLBC细胞中增加RB1核输出和细胞增殖。此外,XPO1与rna结合蛋白PTBP1相互作用,将FOXO1 mRNA输出到细胞质,从而激活FOXO1- klf5轴作为反馈。本研究表明,XPO1抑制剂KPT-330与CDK4/6抑制剂在体内加性抑制BLBC肿瘤生长。这些结果揭示了KLF5和XPO1之间的一种新的正反馈调节回路,并为BLBC的治疗提供了新的策略。
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来源期刊
Advanced Science
Advanced Science CHEMISTRY, MULTIDISCIPLINARYNANOSCIENCE &-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
18.90
自引率
2.60%
发文量
1602
审稿时长
1.9 months
期刊介绍: Advanced Science is a prestigious open access journal that focuses on interdisciplinary research in materials science, physics, chemistry, medical and life sciences, and engineering. The journal aims to promote cutting-edge research by employing a rigorous and impartial review process. It is committed to presenting research articles with the highest quality production standards, ensuring maximum accessibility of top scientific findings. With its vibrant and innovative publication platform, Advanced Science seeks to revolutionize the dissemination and organization of scientific knowledge.
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