受损的细胞胆固醇稳态降低肿瘤源性外泌体负荷并调节癌细胞的恶性转化。

IF 1.8 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Syed Sultan Beevi, Aishwarya Sudam Bhale, Vinod Kumar Verma, Radhika Chowdary Darapuneni
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引用次数: 0

摘要

肿瘤源性外泌体(TDEs)在肿瘤向其他部位水平转移致癌信息方面起着至关重要的作用。细胞胆固醇稳态已成为影响外泌体生物发生和细胞释放的重要因素。在本研究中,我们使用U18666A诱导MDA-MB231细胞晚期内体内胆固醇积累。我们评估了来自u18666a处理和未处理细胞的外泌体在HEK293细胞中启动恶性转化的能力。从未处理和u18666a处理的MDA-MB231细胞和HEK293细胞中分离并表征外泌体。研究了未经处理的MDA-MB231细胞(简称UCE)和u18666a处理的MDA-MB231细胞(简称UTCE)衍生的外泌体诱导HEK293细胞转化的影响。MDA-MB231细胞衍生的外泌体诱导HEK293细胞增殖、迁移、恶性转化和上皮-间质转化(EMT)过程。U18666A治疗导致晚期内体胆固醇积累,从而显著逆转MDA-MB231细胞的EMT过程。这种治疗减少了癌细胞释放的肿瘤源性外泌体的含量,使它们的致癌性降低。这种致癌潜能的降低是显而易见的,因为它们在受体HEK293细胞中失去了诱导恶性转化的能力。调节胆固醇稳态和破坏侵袭性癌细胞的胆固醇供应是一种有吸引力的策略,可以抑制肿瘤源性外泌体的释放,并随后减轻其在驱动癌症进展和转移中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impaired Cellular Cholesterol Homeostasis Decreases Tumor-Derived Exosome Load And Modulates Malignant Transformation in Cancer Cells.

Tumor-derived exosomes (TDEs) play a crucial role in horizontally transferring oncogenic information from tumors to other sites. Cellular cholesterol homeostasis has emerged as a significant factor influencing exosomal biogenesis and cellular release. In this study, we employed U18666A to induce cholesterol accumulation within the late endosomes of MDA-MB231 cells. We assessed the capacity of exosomes derived from U18666A-treated and untreated cells to initiate malignant transformation in HEK293 cells. Exosomes were isolated and characterized from both untreated and U18666A-treated MDA-MB231 cells, and HEK293 cells. The impact of exosomes derived from untreated MDA-MB231 cells (referred to as UCE) and U18666A-treated MDA-MB231 cells (referred to as UTCE) to induce transformation on HEK293 cells was investigated. Exosomes derived from MDA-MB231 cells induced proliferation, migration, malignant transformation, and epithelial-mesenchymal transition (EMT) process in HEK293 cells. Treatment with U18666A resulted in cholesterol accumulation within late endosomes, consequently markedly reversing the EMT process in MDA-MB231 cells. This treatment diminished the content of Tumor-derived exosomes released by the cancer cells, rendering them less oncogenic. This reduction in oncogenic potential was evident as they lost the ability to induce malignant transformation in recipient HEK293 cells. Modulating cholesterol homeostasis and disrupting the supply of cholesterol to aggressive cancer cells emerges as an appealing strategy to restrain the release of Tumor-derived exosomes and subsequently mitigate their contributory role in driving cancer progression and metastasis.

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来源期刊
Cell Biochemistry and Biophysics
Cell Biochemistry and Biophysics 生物-生化与分子生物学
CiteScore
4.40
自引率
0.00%
发文量
72
审稿时长
7.5 months
期刊介绍: Cell Biochemistry and Biophysics (CBB) aims to publish papers on the nature of the biochemical and biophysical mechanisms underlying the structure, control and function of cellular systems The reports should be within the framework of modern biochemistry and chemistry, biophysics and cell physiology, physics and engineering, molecular and structural biology. The relationship between molecular structure and function under investigation is emphasized. Examples of subject areas that CBB publishes are: · biochemical and biophysical aspects of cell structure and function; · interactions of cells and their molecular/macromolecular constituents; · innovative developments in genetic and biomolecular engineering; · computer-based analysis of tissues, cells, cell networks, organelles, and molecular/macromolecular assemblies; · photometric, spectroscopic, microscopic, mechanical, and electrical methodologies/techniques in analytical cytology, cytometry and innovative instrument design For articles that focus on computational aspects, authors should be clear about which docking and molecular dynamics algorithms or software packages are being used as well as details on the system parameterization, simulations conditions etc. In addition, docking calculations (virtual screening, QSAR, etc.) should be validated either by experimental studies or one or more reliable theoretical cross-validation methods.
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