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压缩力对p65核定位和染色质状态的调控

Regulation of p65 nuclear localization and chromatin states by compressive force.

作者信息

Gupta Rajshikhar, Schärer Paulina, Liao Yawen, Roy Bibhas, Benoit Roger M, Shivashankar G V

机构信息

Laboratory of Multiscale Bioimaging, Paul Scherrer Institut, Villigen, Aargau, Switzerland 5232.

Department of Health Sciences and Technology, ETH Zürich, Zürich, Switzerland 8092.

出版信息

Mol Biol Cell. 2025 Apr 1;36(4):ar37. doi: 10.1091/mbc.E23-11-0431. Epub 2025 Feb 5.

Abstract

The tumor microenvironment (TME) is a dynamic ecosystem, that evolves with the developing tumor to support its growth and metastasis. A key aspect of TME evolution is the recruitment of stromal fibroblasts, carried out via the release of various tumor signals including tumor necrosis factor (TNFα). These tumor signals in turn alter the mechanical properties of the TME as the tumor grows. Because of the important role of stromal cells in supporting tumor progression, new therapies aim to target stromal fibroblasts. However, these therapies have been unsuccessful in part due to the limited understanding of cross-talk between chemical and altered mechanical signaling within stromal fibroblasts. To investigate this, we designed a coculture assay with YFP-TNFα releasing spheroids embedded within collagen gels alongside fibroblasts to mimic the stromal response within the TME. This resulted in the nuclear translocation of p65 in the stromal fibroblasts which was further intensified by the addition of compressive stress. The combination of mechanical and chemical signals led to cytoskeletal disruption and induced a distinct chromatin state in the stromal fibroblasts. These results highlight the important cross-talk between cytokine signaling and mechanical forces on stromal cells within the TME and facilitate the development of a better spheroid model for therapeutic interventions.

摘要

肿瘤微环境(TME)是一个动态的生态系统,它随着肿瘤的发展而演变,以支持其生长和转移。TME演变的一个关键方面是基质成纤维细胞的募集,这是通过释放包括肿瘤坏死因子(TNFα)在内的各种肿瘤信号来实现的。随着肿瘤的生长,这些肿瘤信号反过来又会改变TME的力学性质。由于基质细胞在支持肿瘤进展中发挥着重要作用,新的治疗方法旨在靶向基质成纤维细胞。然而,这些治疗方法部分未取得成功,原因是对基质成纤维细胞内化学信号与改变的机械信号之间的相互作用了解有限。为了对此进行研究,我们设计了一种共培养试验,将嵌入胶原蛋白凝胶中的释放YFP-TNFα的球体与成纤维细胞一起培养,以模拟TME内的基质反应。这导致基质成纤维细胞中p65的核转位,而添加压缩应力会使其进一步增强。机械信号和化学信号的组合导致细胞骨架破坏,并在基质成纤维细胞中诱导出独特的染色质状态。这些结果突出了细胞因子信号传导与TME内基质细胞上的机械力之间重要的相互作用,并有助于开发更好的用于治疗干预的球体模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c42f/12005105/87631d8932cb/mbc-36-ar37-g001.jpg

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