Metallothionein-3 is a multifunctional driver that modulates the development of sorafenib-resistant phenotype in hepatocellular carcinoma cells

IF 9.5 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Miguel Angel Merlos Rodrigo, Hana Michalkova, Ana Maria Jimenez Jimenez, Frantisek Petrlak, Tomas Do, Ladislav Sivak, Yazan Haddad, Petra Kubickova, Vivian de los Rios, J. Ignacio Casal, Marina Serrano-Macia, Teresa C. Delgado, Loreto Boix, Jordi Bruix, Maria L. Martinez Chantar, Vojtech Adam, Zbynek Heger
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Abstract

Metallothionein-3 (hMT3) is a structurally unique member of the metallothioneins family of low-mass cysteine-rich proteins. hMT3 has poorly characterized functions, and its importance for hepatocellular carcinoma (HCC) cells has not yet been elucidated. Therefore, we investigated the molecular mechanisms driven by hMT3 with a special emphasis on susceptibility to sorafenib. Intrinsically sorafenib-resistant (BCLC-3) and sensitive (Huh7) cells with or without up-regulated hMT3 were examined using cDNA microarray and methods aimed at mitochondrial flux, oxidative status, cell death, and cell cycle. In addition, in ovo/ex ovo chick chorioallantoic membrane (CAM) assays were conducted to determine a role of hMT3 in resistance to sorafenib and associated cancer hallmarks, such as angiogenesis and metastastic spread. Molecular aspects of hMT3-mediated induction of sorafenib-resistant phenotype were delineated using mass-spectrometry-based proteomics. The phenotype of sensitive HCC cells can be remodeled into sorafenib-resistant one via up-regulation of hMT3. hMT3 has a profound effect on mitochondrial respiration, glycolysis, and redox homeostasis. Proteomic analyses revealed a number of hMT3-affected biological pathways, including exocytosis, glycolysis, apoptosis, angiogenesis, and cellular stress, which drive resistance to sorafenib. hMT3 acts as a multifunctional driver capable of inducing sorafenib-resistant phenotype of HCC cells. Our data suggest that hMT3 and related pathways could serve as possible druggable targets to improve therapeutic outcomes in patients with sorafenib-resistant HCC.
金属硫蛋白-3是调节肝癌细胞索拉非尼耐药表型发展的多功能驱动因子
金属硫蛋白-3(hMT3)是富含半胱氨酸的低质量金属硫蛋白家族中结构独特的成员。因此,我们研究了由 hMT3 驱动的分子机制,并特别强调了对索拉非尼的敏感性。我们使用 cDNA 微阵列和线粒体通量、氧化状态、细胞死亡和细胞周期等方法研究了 hMT3 是否上调的索拉非尼耐药细胞(BCLC-3)和敏感细胞(Huh7)。此外,还进行了卵内/卵外小鸡绒毛膜(CAM)试验,以确定 hMT3 在索拉非尼耐药性和相关癌症标志(如血管生成和转移扩散)中的作用。研究人员利用基于质谱的蛋白质组学方法,对 hMT3 介导的索拉非尼耐药表型的分子方面进行了描述。hMT3 对线粒体呼吸、糖酵解和氧化还原平衡有深远影响。蛋白质组分析揭示了许多受hMT3影响的生物通路,包括外泌、糖酵解、细胞凋亡、血管生成和细胞应激,这些通路驱动了索拉非尼耐药。我们的数据表明,hMT3及相关通路可作为药物靶点,改善索拉非尼耐药HCC患者的治疗效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biomarker Research
Biomarker Research Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
15.80
自引率
1.80%
发文量
80
审稿时长
10 weeks
期刊介绍: Biomarker Research, an open-access, peer-reviewed journal, covers all aspects of biomarker investigation. It seeks to publish original discoveries, novel concepts, commentaries, and reviews across various biomedical disciplines. The field of biomarker research has progressed significantly with the rise of personalized medicine and individual health. Biomarkers play a crucial role in drug discovery and development, as well as in disease diagnosis, treatment, prognosis, and prevention, particularly in the genome era.
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