HSPB8-BAG3伴侣复合物通过调节CASA介导的Filamin A降解来调节肝内胆管癌的细胞侵袭。

IF 4.4 4区 医学 Q2 ONCOLOGY Cancer Biology & Therapy Pub Date : 2024-12-31 Epub Date: 2024-08-31 DOI:10.1080/15384047.2024.2396694
Bo Shu, Yu Wen, Ronghua Lin, Chao He, Cailan Luo, Fazhao Li
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引用次数: 0

摘要

肝内胆管癌(ICC)的发病率正在稳步上升,而且死亡率很高。我们收集了临床样本,以检测 ICC 组织中 HSPB8 和 BAG3 的表达。培养 ICC 细胞并用过表达或沉默特定基因的质粒进行转染,以研究基因表达改变对细胞功能的影响。伤口愈合试验用于评估细胞迁移能力。Transwell 试验用于评估细胞侵袭能力。Co-IP 用于验证 HSPB8 和 BAG3 之间的结合关系。通过构建转移性肿瘤模型,验证了 HSPB8 和 BAG3 对体内肿瘤肺转移的影响。通过上述实验,我们发现HSPB8和BAG3在ICC组织和细胞中表达上调,且两者的表达呈正相关。通过上调或下调BAG3的表达,可以促进或抑制ICC细胞的转移能力。此外,HSPB8-BAG3伴侣复合物通过激活自噬作用导致Filamin A异常降解。Filamin A的表达增加会抑制ICC细胞的迁移和侵袭。在体内过表达HSPB8和BAG3可促进ICC细胞的肺转移能力。HSPB8-BAG3伴侣复合物通过调节CASA介导的Filamin A降解促进了ICC细胞的迁移和侵袭,为加强ICC治疗策略提供了启示。
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HSPB8-BAG3 chaperone complex modulates cell invasion in intrahepatic cholangiocarcinoma by regulating CASA-mediated Filamin A degradation.

The incidence of intrahepatic cholangiocarcinoma (ICC) is steadily rising, and it is associated with a high mortality rate. Clinical samples were collected to detect the expression of HSPB8 and BAG3 in ICC tissues. ICC cells were cultured and transfected with plasmids that overexpressed or silenced specific genes to investigate the impact of gene expression alterations on cell function. qPCR and Western blot techniques were utilized to measure gene and protein expression levels. A wound healing assay was conducted to assess cell migration ability. The Transwell assay was used to assess cell invasion ability. Co-IP was used to verify the binding relationship between HSPB8 and BAG3. The effects of HSPB8 and BAG3 on lung metastasis of tumors in vivo were verified by constructing a metastatic tumor model. Through the above experiments, we discovered that the expressions of HSPB8 and BAG3 were up-regulated in ICC tissues and cells, and their expressions were positively correlated. The metastatic ability of ICC cells could be promoted or inhibited by upregulating or downregulating the expression of BAG3. Furthermore, the HSPB8-BAG3 chaperone complex resulted in the abnormal degradation of Filamin A by activating autophagy. Increased expression of Filamin A inhibits the migration and invasion of ICC cells. Overexpression of HSPB8 and BAG3 in vivo promoted the lung metastasis ability of ICC cells. The HSPB8-BAG3 chaperone complex promotes ICC cell migration and invasion by regulating CASA-mediated degradation of Filamin A, offering insights for enhancing ICC therapeutic strategies.

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来源期刊
Cancer Biology & Therapy
Cancer Biology & Therapy 医学-肿瘤学
CiteScore
7.00
自引率
0.00%
发文量
60
审稿时长
2.3 months
期刊介绍: Cancer, the second leading cause of death, is a heterogenous group of over 100 diseases. Cancer is characterized by disordered and deregulated cellular and stromal proliferation accompanied by reduced cell death with the ability to survive under stresses of nutrient and growth factor deprivation, hypoxia, and loss of cell-to-cell contacts. At the molecular level, cancer is a genetic disease that develops due to the accumulation of mutations over time in somatic cells. The phenotype includes genomic instability and chromosomal aneuploidy that allows for acceleration of genetic change. Malignant transformation and tumor progression of any cell requires immortalization, loss of checkpoint control, deregulation of growth, and survival. A tremendous amount has been learned about the numerous cellular and molecular genetic changes and the host-tumor interactions that accompany tumor development and progression. It is the goal of the field of Molecular Oncology to use this knowledge to understand cancer pathogenesis and drug action, as well as to develop more effective diagnostic and therapeutic strategies for cancer. This includes preventative strategies as well as approaches to treat metastases. With the availability of the human genome sequence and genomic and proteomic approaches, a wealth of tools and resources are generating even more information. The challenge will be to make biological sense out of the information, to develop appropriate models and hypotheses and to translate information for the clinicians and the benefit of their patients. Cancer Biology & Therapy aims to publish original research on the molecular basis of cancer, including articles with translational relevance to diagnosis or therapy. We will include timely reviews covering the broad scope of the journal. The journal will also publish op-ed pieces and meeting reports of interest. The goal is to foster communication and rapid exchange of information through timely publication of important results using traditional as well as electronic formats. The journal and the outstanding Editorial Board will strive to maintain the highest standards for excellence in all activities to generate a valuable resource.
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