School of Biological Sciences, Faculty of Environmental and Life Sciences, University of Southampton, Southampton, United Kingdom.
PLoS One. 2021 Nov 5;16(11):e0246707. doi: 10.1371/journal.pone.0246707. eCollection 2021.
Glycogen-specific kinase (GSK3β) is an integral regulator of the Wnt signalling pathway as well as many other diverse signalling pathways and processes. Dys-regulation of GSK3β is implicated in many different pathologies, including neurodegenerative disorders as well as many different tumour types. In the context of tumour development, GSK3β has been shown to play both oncogenic and tumour suppressor roles, depending upon tissue, signalling environment or disease progression. Although multiple substrates of the GSK3β kinase have been identified, the wider protein networks within which GSK3β participates are not well known, and the consequences of these interactions not well understood. In this study, LC-MS/MS expression analysis was performed using knockout GSK3β colorectal cancer cells and isogenic controls in colorectal cancer cell lines carrying dominant stabilizing mutations of β-catenin. Consistent with the role of GSK3β, we found that β-catenin levels and canonical Wnt activity are unaffected by knockout of GSK3β and therefore used this knockout cell model to identify other processes in which GSK3β is implicated. Quantitative proteomic analysis revealed perturbation of proteins involved in cell-cell adhesion, and we characterized the phenotype and altered proteomic profiles associated with this. We also characterized the perturbation of metabolic pathways resulting from GSK3β knockout and identified defects in glycogen metabolism. In summary, using a precision colorectal cancer cell-line knockout model with constitutively activated β-catenin we identified several of the diverse pathways and processes associated with GSK3β function.
糖原特异性激酶(GSK3β)是 Wnt 信号通路以及许多其他不同信号通路和过程的重要调节因子。GSK3β 的失调与许多不同的病理有关,包括神经退行性疾病和许多不同的肿瘤类型。在肿瘤发展的背景下,GSK3β 已被证明具有致癌和肿瘤抑制作用,具体取决于组织、信号环境或疾病进展。尽管已经鉴定出 GSK3β 激酶的多个底物,但 GSK3β 参与的更广泛的蛋白质网络并不为人所知,这些相互作用的后果也不为人所知。在这项研究中,使用携带 β-连环蛋白显性稳定突变的结直肠癌细胞系中的 GSK3β 敲除结直肠癌细胞和同基因对照进行了 LC-MS/MS 表达分析。与 GSK3β 的作用一致,我们发现β-连环蛋白水平和经典 Wnt 活性不受 GSK3β 敲除的影响,因此我们使用这种敲除细胞模型来鉴定 GSK3β 涉及的其他过程。定量蛋白质组学分析显示,参与细胞-细胞黏附的蛋白质受到干扰,我们对与该现象相关的表型和改变的蛋白质组学图谱进行了描述。我们还描述了由于 GSK3β 敲除而导致的代谢途径的干扰,并确定了糖原代谢缺陷。总之,我们使用带有组成性激活β-连环蛋白的精确结直肠癌细胞系敲除模型,鉴定出与 GSK3β 功能相关的几种不同的途径和过程。