Department of Biology, Indian Institute of Science Education and Research, Dr. Homi Bhabha Road, Pune, Maharashtra, 411008, India.
The School of Chemistry and Molecular Biology, St. Lucia Campus, The University of Queensland, Brisbane, QLD, 4072, Australia.
BMC Cancer. 2023 Apr 25;23(1):374. doi: 10.1186/s12885-023-10866-7.
Apoptosis or programmed cell death plays a vital role in maintaining homeostasis and, therefore, is a tightly regulated process. Deregulation of apoptosis signalling can favour carcinogenesis. Apoptosis inhibitor 5 (Api5), an inhibitor of apoptosis, is upregulated in cancers. Interestingly, Api5 is shown to regulate both apoptosis and cell proliferation. To address the precise functional significance of Api5 in carcinogenesis here we investigate the role of Api5 in breast carcinogenesis.
Initially, we carried out in silico analyses using TCGA and GENT2 datasets to understand expression pattern of API5 in breast cancer patients followed by investigating the protein expression in Indian breast cancer patient samples. To investigate the functional importance of Api5 in breast carcinogenesis, we utilised MCF10A 3D breast acinar cultures and spheroid cultures of malignant breast cells with altered Api5 expression. Various phenotypic and molecular changes induced by altered Api5 expression were studied using these 3D culture models. Furthermore, in vivo tumorigenicity studies were used to confirm the importance of Api5 in breast carcinogenesis.
In-silico analysis revealed elevated levels of Api5 transcript in breast cancer patients which correlated with poor prognosis. Overexpression of Api5 in non-tumorigenic breast acinar cultures resulted in increased proliferation and cells exhibited a partial EMT-like phenotype with higher migratory potential and disruption in cell polarity. Furthermore, during acini development, the influence of Api5 is mediated via the combined action of FGF2 activated PDK1-Akt/cMYC signalling and Ras-ERK pathways. Conversely, Api5 knock-down downregulated FGF2 signalling leading to reduced proliferation and diminished in vivo tumorigenic potential of the breast cancer cells.
Taken together, our study identifies Api5 as a central player involved in regulating multiple events during breast carcinogenesis including proliferation, and apoptosis through deregulation of FGF2 signalling pathway.
细胞凋亡或程序性细胞死亡在维持体内平衡中起着至关重要的作用,因此是一个受到严格调控的过程。细胞凋亡信号的失调会促进癌变。凋亡抑制剂 5(Api5)是一种凋亡抑制剂,在癌症中上调。有趣的是,Api5 被证明可以调节细胞凋亡和细胞增殖。为了确定 Api5 在致癌作用中的精确功能意义,我们在这里研究了 Api5 在乳腺癌发生中的作用。
最初,我们使用 TCGA 和 GENT2 数据集进行了计算机分析,以了解乳腺癌患者中 API5 的表达模式,然后研究了印度乳腺癌患者样本中的蛋白表达。为了研究 Api5 在乳腺癌发生中的功能重要性,我们利用 MCF10A 3D 乳腺腺泡培养物和恶性乳腺细胞的球体培养物,改变了 Api5 的表达。使用这些 3D 培养模型研究了改变 Api5 表达诱导的各种表型和分子变化。此外,还进行了体内肿瘤发生研究,以确认 Api5 在乳腺癌发生中的重要性。
计算机分析显示,乳腺癌患者的 Api5 转录本水平升高,这与预后不良相关。非致瘤性乳腺腺泡培养物中 Api5 的过表达导致增殖增加,细胞表现出部分 EMT 样表型,迁移潜力更高,细胞极性受到破坏。此外,在腺泡发育过程中,Api5 的影响是通过 FGF2 激活的 PDK1-Akt/cMYC 信号和 Ras-ERK 途径的联合作用介导的。相反,Api5 敲低下调了 FGF2 信号,导致乳腺癌细胞增殖减少,体内致瘤潜能降低。
综上所述,我们的研究确定了 Api5 是一个核心参与者,涉及调节乳腺癌发生过程中的多个事件,包括增殖和凋亡,通过调节 FGF2 信号通路。