PO.ET03.02 · 实验与分子治疗
肝细胞癌中YBX1依赖性耐药机制的若干方面
Aspects of the YBX1-dependent mechanism of drug resistance in hepatocellular carcinoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:肝细胞癌(HCC)是最常见的原发性肝癌类型。在里奥格兰德河谷(RGV),高发的肥胖、糖尿病和MAFLD升高了HCC发病率,而社会经济差异和医疗资源受限进一步加剧了这一问题。因此,晚期诊断和治疗耐药导致患者预后不良,凸显了理解HCC进展背后分子机制的重要性。Y盒结合蛋白1(YBX1)是一种转录和翻译的多功能调节因子,参与包括HCC在内的多种癌症中的EMT、转移和耐药。为研究YBX1过表达(OE)所激活的下游信号通路,我们构建了嘌呤霉素稳定的GFP标记YBX1 OE SK-HEP1细胞系。已就这些细胞系的侵袭、迁移、增殖、集落形成和细胞阻抗特性进行了评估。YBX1 OE影响多种下游激酶。我们鉴定出一种负责致癌性和耐药的特定激酶。我们将继续使用特异性激活剂和抑制剂来表征和验证该激酶活性。
方法:分析TCGA以获取人HCC队列中的YBX1谱。使用SK-HEP1细胞借助慢病毒质粒构建嘌呤霉素稳定的YBX1 OE细胞系。同时对细胞系进行GFP表达富集。功能检测包括细胞增殖、集落形成、迁移、侵袭以及使用xCELLigence系统的实时阻抗分析。MTT检测确定IC50值。使用人蛋白质组分析芯片(Human Proteome Profiler Array)进行激酶芯片分析。同时进行了激酶激活剂和抑制剂检测。
结果:TCGA分析显示,与正常组织相比,HCC肿瘤中YBX1表达升高,并与不良生存和转移增加相关。在体外,YBX1过表达增强了增殖、迁移、侵袭和集落形成,而敲低则减弱了这些效应。xCELLigence分析证实过表达YBX1的细胞生长动力学更快。磷酸化蛋白质组分析鉴定出多种YBX1调节的激酶,包括Src家族成员。
结论:已成功建立并表征了具有差异性YBX1表达的稳定SK-HEP1模型。这些发现证实了YBX1在HCC中的致癌作用。正在进行的涉及激酶通路抑制剂和激活剂的研究可能发现新的治疗靶点,以克服耐药并改善RGV及其他地区HCC患者的预后。
查看英文原文 English abstract
Background: Hepatocellular carcinoma (HCC) is the most common type of primary liver cancer. In the Rio Grande Valley (RGV), high rates of obesity, diabetes, and MAFLD elevate HCC incidence, further worsened by socioeconomic disparities and limited healthcare access. Consequently, late-stage diagnoses and therapeutic resistance lead to poor patient outcomes, emphasizing the importance of understanding the molecular mechanisms behind HCC progression. Y-box binding protein 1 (YBX1) is a multifunctional regulator of transcription and translation involved in EMT, metastasis, and drug resistance in various cancers, including HCC. To investigate the downstream signaling pathways activated by YBX1 overexpression (OE), we developed puromycin-stable GFP-tagged YBX1 OE SK-HEP1 cell lines. These cell lines have been evaluated for their invasion, migration, proliferation, colony formation, and cell impedance properties. YBX1 OE influenced multiple downstream kinases. We identified a specific kinase responsible for oncogenicity and drug resistance. We will continue to characterize and validate the kinase activity using specific activators and inhibitors.
Methods: The TCGA was analyzed for the YBX1 profile in the human HCC cohort. SK-HEP1 cells were used to develop a puromycin-stable YBX1 OE cell line using lentiviral plasmids. The cell lines were also enriched for GFP expression. Functional assays included cell proliferation, colony formation, migration, invasion, and real-time impedance analysis using the xCELLigence system. MTT assays determined IC50 values. The Human Proteome Profiler Array was used for kinase array analysis. Kinase activator and inhibitor assays were also performed.
Results: Analysis of the TCGA revealed elevated YBX1 expression in HCC tumors compared to normal tissues, which correlates with poor survival and increased metastasis. In vitro, YBX1 overexpression boosted proliferation, migration, invasion, and colony formation, while knockdown diminished these effects. xCELLigence analysis confirmed faster growth kinetics in cells overexpressing YBX1. Phosphoproteomic profiling identified several YBX1-regulated kinases, including members of the Src family.
Conclusion: Stable SK-HEP1 models with differential YBX1 expression have been successfully established and characterized. These findings confirm YBX1's oncogenic role in HCC. Ongoing research involving kinase pathway inhibitors and activators may uncover new therapeutic targets to overcome resistance and enhance outcomes for HCC patients in the RGV and beyond.
利益披露 Disclosure
Y. Abuchard Anaya, None..
A. Ayala Pazzi, None..
V. Nagati, None..
K. Renteria, None..
D. Soto, None..
M. Tripathi, None.