The p-MYH9/USP22/HIF-1α axis promotes lenvatinib resistance and cancer stemness in hepatocellular carcinoma

IF 40.8 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Qiaonan Shan, Lu Yin, Qifan Zhan, Jiongjie Yu, Sheng Pan, Jianyong Zhuo, Wei Zhou, Jiaqi Bao, Lincheng Zhang, Jiachen Hong, Jianan Xiang, Qingyang Que, Kangchen Chen, Shengjun Xu, Jingrui Wang, Yangbo Zhu, Bin He, Jingbang Wu, Haiyang Xie, Shusen Zheng, Tingting Feng, Sunbin Ling, Xiao Xu
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Abstract

Lenvatinib is a targeted drug used for first-line treatment of hepatocellular carcinoma (HCC). A deeper insight into the resistance mechanism of HCC against lenvatinib is urgently needed. In this study, we aimed to dissect the underlying mechanism of lenvatinib resistance (LR) and provide effective treatment strategies. We established an HCC model of acquired LR. Cell counting, migration, self-renewal ability, chemoresistance and expression of stemness genes were used to detect the stemness of HCC cells. Molecular and biochemical strategies such as RNA-sequencing, immunoprecipitation, mass spectrometry and ubiquitination assays were used to explore the underlying mechanisms. Patient-derived HCC models and HCC samples from patients were used to demonstrate clinical significance. We identified that increased cancer stemness driven by the hypoxia-inducible factor-1α (HIF-1α) pathway activation is responsible for acquired LR in HCC. Phosphorylated non-muscle myosin heavy chain 9 (MYH9) at Ser1943, p-MYH9 (Ser1943), could recruit ubiquitin-specific protease 22 (USP22) to deubiquitinate and stabilize HIF-1α in lenvatinib-resistant HCC. Clinically, p-MYH9 (Ser1943) expression was upregulated in HCC samples, which predicted poor prognosis and LR. A casein kinase-2 (CK2) inhibitor and a USP22 inhibitor effectively reversed LR in vivo and in vitro. Therefore, the p-MYH9 (Ser1943)/USP22/HIF-1α axis is critical for LR and cancer stemness. For the diagnosis and treatment of LR in HCC, p-MYH9 (Ser1943), USP22, and HIF-1α might be valuable as novel biomarkers and targets.

Abstract Image

来伐替尼是一种用于肝细胞癌(HCC)一线治疗的靶向药物。目前亟需深入了解HCC对伦伐替尼的耐药机制。在本研究中,我们旨在剖析来伐替尼耐药(LR)的内在机制,并提供有效的治疗策略。我们建立了获得性来伐替尼耐药的HCC模型。通过细胞计数、迁移、自我更新能力、化疗耐药性和干性基因的表达来检测HCC细胞的干性。采用分子和生化策略,如RNA测序、免疫沉淀、质谱分析和泛素化检测,来探索其潜在机制。患者衍生的 HCC 模型和患者的 HCC 样本被用来证明其临床意义。我们发现,由缺氧诱导因子-1α(HIF-1α)通路激活驱动的癌症干性增强是导致HCC获得性LR的原因。在来伐替尼耐药的HCC中,Ser1943处磷酸化的非肌球蛋白重链9(MYH9)(p-MYH9 (Ser1943))可招募泛素特异性蛋白酶22(USP22)去泛素化并稳定HIF-1α。临床上,p-MYH9(Ser1943)在HCC样本中表达上调,这预示着预后不良和LR。酪蛋白激酶-2(CK2)抑制剂和USP22抑制剂能有效逆转体内和体外的LR。因此,p-MYH9(Ser1943)/USP22/HIF-1α轴对LR和癌症干性至关重要。对于 HCC 中 LR 的诊断和治疗,p-MYH9 (Ser1943)、USP22 和 HIF-1α 可能是有价值的新型生物标记物和靶点。
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来源期刊
Signal Transduction and Targeted Therapy
Signal Transduction and Targeted Therapy Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
44.50
自引率
1.50%
发文量
384
审稿时长
5 weeks
期刊介绍: Signal Transduction and Targeted Therapy is an open access journal that focuses on timely publication of cutting-edge discoveries and advancements in basic science and clinical research related to signal transduction and targeted therapy. Scope: The journal covers research on major human diseases, including, but not limited to: Cancer,Cardiovascular diseases,Autoimmune diseases,Nervous system diseases.
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