Bhattacharya Saurav, Sarker Sushmita, Das Shaswati, Ahir Manisha, Chattopadhyay Sreya, Ghosh Swatilekha, Adhikary Arghya
Centre for Research in Nanoscience and Nanotechnology, Technology Campus, University of Calcutta, JD-2, Sector-III, Salt Lake, Kolkata, 700106, West Bengal, India.
Department of Internal Medicine, University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd, Dallas, TX, 75390, USA.
Apoptosis. 2024 Feb;29(1-2):191-209. doi: 10.1007/s10495-023-01912-7. Epub 2023 Nov 9.
During cancer cell invasion, integrin undergoes constant endo/exocytic trafficking. It has been found that the recycling ability of integrin β1 through Rab11-controlled long loop pathways is directly associated with cancer invasion. Previous studies showed that gain-of-function mutant p53 regulates the Rab-coupling protein [RCP]-mediated integrin β1 recycling by inactivating tumor suppressor TAp63. So, we were interested to investigate the involvement of miR-205 in this process. In the current study first, we evaluated that the lower expression of miR-205 in MDA-MB-231 cell line is associated with high motility and invasiveness. Further investigation corroborated that miR-205 directly targets RCP resulting in attenuated RCP-mediated integrin β1 recycling. Overexpression of TAp63 validates our in vitro findings. To appraise the anti-metastatic role of miR-205, we developed two in vivo experimental models- xenograft-chick embryo and xenograft-immunosuppressed BALB/c mice. Our in vivo results support the negative effect of miR-205 on metastasis. Therefore, these findings advocate the tumor suppressor activity of miR-205 in breast cancer cells and suggest that in the future development of miR-205-targeting RNAi therapeutics could be a smart alternative approach to prevent the metastatic fate of the disease.
在癌细胞侵袭过程中,整合素经历持续的内吞/外排运输。已发现整合素β1通过Rab11控制的长循环途径的循环能力与癌症侵袭直接相关。先前的研究表明,功能获得性突变型p53通过使肿瘤抑制因子TAp63失活来调节Rab偶联蛋白[RCP]介导的整合素β1循环。因此,我们有兴趣研究miR-205在此过程中的作用。在当前研究中,首先,我们评估了MDA-MB-231细胞系中miR-205的低表达与高迁移率和侵袭性相关。进一步的研究证实,miR-205直接靶向RCP,导致RCP介导的整合素β1循环减弱。TAp63的过表达验证了我们的体外研究结果。为了评估miR-205的抗转移作用,我们建立了两种体内实验模型——异种移植鸡胚和异种移植免疫抑制BALB/c小鼠。我们的体内结果支持miR-205对转移的负面影响。因此,这些发现支持了miR-205在乳腺癌细胞中的肿瘤抑制活性,并表明在未来开发靶向miR-205的RNAi疗法可能是一种预防该疾病转移命运的明智替代方法。