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干扰素诱导跨膜蛋白3(IFITM3)通过靶向MET/AKT/FOXO3/c-MYC轴促进胃癌的恶性进展、癌症干性和化疗耐药性。

IFITM3 promotes malignant progression, cancer stemness and chemoresistance of gastric cancer by targeting MET/AKT/FOXO3/c-MYC axis.

作者信息

Chu Pei-Yi, Huang Wei-Chieh, Tung Shiao-Lin, Tsai Chung-Ying, Chen Chih Jung, Liu Yu-Chin, Lee Chia-Wen, Lin Yang-Hsiang, Lin Hung-Yu, Chen Cheng-Yi, Yeh Chau-Ting, Lin Kwang-Huei, Chi Hsiang-Cheng

机构信息

Department of Post-Baccalaureate Medicine, College of Medicine, National Chung Hsing University, Taichung, 402, Taiwan.

Department of Pathology, Show Chwan Memorial Hospital, Changhua, 500, Taiwan.

出版信息

Cell Biosci. 2022 Aug 8;12(1):124. doi: 10.1186/s13578-022-00858-8.

Abstract

BACKGROUND

Targeting the HGF/MET signaling pathway has been a viable therapeutic strategy for various cancer types due to hyperactivation of HGF/MET axis occurs frequently that leads to detrimental cancer progression and recurrence. Deciphering novel molecule mechanisms underlying complex HGF/MET signaling network is therefore critical to development of effective therapeutics for treating MET-dependent malignancies.

RESULTS

Using isobaric mass tag-based quantitative proteomics approach, we identified IFITM3, an interferon-induced transmembrane protein that was highly expressed in micro-dissected gastric cancer (GC) tumor regions relative to adjacent non-tumor epithelia. Analyses of GC clinical specimens revealed that expression IFITM3 was closely correlated to advanced pathological stages. IFITM3 has been reported as a PIP3 scaffold protein that promotes PI3K signaling. In present study, we unprecedentedly unraveled that IFITM3 associated with MET and AKT to facilitate HGF/MET mediated AKT signaling crosstalk in suppressing FOXO3, consequently leading to c-MYC mediated GC progression. In addition, gene ontology analyses of the clinical GC cohort revealed significant correlation between IFITM3-associated genes and targets of c-MYC, which is a crucial downstream effector of HGF/MET pathway in cancer progression. Moreover, we demonstrated ectopic expression of IFITM3 suppressed FOXO3 expression, consequently led to c-MYC induction to promote tumor growth, cell metastasis, cancer stemness as well as chemoresistance. Conversely, depletion of IFITM3 resulted in suppression of HGF triggered cellular growth and migration via inhibition of AKT/c-MYC signaling in GC.

CONCLUSIONS

In summary, our present study unveiled a novel regulatory mechanism for c-MYC-driven oncogenesis underlined by IFITM3-mediated signaling crosstalk between MET associated AKT signaling cascade.

摘要

背景

由于HGF/MET轴的过度激活经常发生,导致有害的癌症进展和复发,因此靶向HGF/MET信号通路已成为各种癌症类型可行的治疗策略。因此,破译复杂的HGF/MET信号网络背后的新分子机制对于开发治疗MET依赖性恶性肿瘤的有效疗法至关重要。

结果

使用基于等压质量标签的定量蛋白质组学方法,我们鉴定了IFITM3,一种干扰素诱导的跨膜蛋白,相对于相邻的非肿瘤上皮细胞,它在显微切割的胃癌(GC)肿瘤区域中高度表达。对GC临床标本的分析表明,IFITM3的表达与晚期病理阶段密切相关。IFITM3已被报道为一种促进PI3K信号传导的PIP3支架蛋白。在本研究中,我们首次揭示IFITM3与MET和AKT相关联,以促进HGF/MET介导的AKT信号串扰,从而抑制FOXO3,进而导致c-MYC介导的GC进展。此外,对临床GC队列的基因本体分析表明,IFITM3相关基因与c-MYC的靶标之间存在显著相关性,c-MYC是癌症进展中HGF/MET通路的关键下游效应物。此外,我们证明IFITM3的异位表达抑制了FOXO3的表达,从而导致c-MYC诱导,促进肿瘤生长、细胞转移、癌症干性以及化疗耐药性。相反,IFITM3的缺失导致通过抑制GC中的AKT/c-MYC信号传导来抑制HGF触发的细胞生长和迁移。

结论

总之,我们目前的研究揭示了一种由IFITM3介导的MET相关AKT信号级联之间的信号串扰所强调的c-MYC驱动肿瘤发生的新调节机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a13c/9361616/bfa14bf5e7eb/13578_2022_858_Fig1_HTML.jpg

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