Cell shape and the microenvironment regulate nuclear translocation of NF-κB in breast epithelial and tumor cells

被引:98
作者
Sero, Julia E. [1 ]
Sailem, Heba Zuhair [1 ]
Ardy, Rico Chandra [1 ]
Almuttaqi, Hannah [1 ]
Zhang, Tongli [2 ]
Bakal, Chris [1 ]
机构
[1] Inst Canc Res, Div Canc Biol, Chester Beatty Labs, London SW3 6JB, England
[2] Univ Oxford, Dept Biochem, Oxford Ctr Integrat Syst Biol, Oxford OX1 3QU, England
基金
英国生物技术与生命科学研究理事会; 英国惠康基金;
关键词
Bayesian; breast cancer; morphology; NF-kappa B; RhoA; GENE-EXPRESSION; SIGNALING PATHWAY; ACTIVE-TRANSPORT; TRANSCRIPTION; OSCILLATIONS; ACTIVATION; SUBSTRATE; STIFFNESS; DYNAMICS; LINES;
D O I
10.15252/msb.20145644
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Although a great deal is known about the signaling events that promote nuclear translocation of NF-kappa B, how cellular biophysics and the microenvironment might regulate the dynamics of this pathway is poorly understood. In this study, we used high-content image analysis and Bayesian network modeling to ask whether cell shape and context features influence NF-kappa B activation using the inherent variability present in unperturbed populations of breast tumor and non-tumor cell lines. Cell-cell contact, cell and nuclear area, and protrusiveness all contributed to variability in NF-kappa B localization in the absence and presence of TNF alpha. Higher levels of nuclear NF-kappa B were associated with mesenchymal-like versus epithelial-like morphologies, and RhoA-ROCK-myosin II signaling was critical for mediating shape-based differences in NF-kappa B localization and oscillations. Thus, mechanical factors such as cell shape and the microenvironment can influence NF-kappa B signaling and may in part explain how different phenotypic outcomes can arise from the same chemical cues.
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页数:16
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