Hu Qingqing, Dou Ning, Wu Qiong, Gao Yong, Li Yandong, Chen Jingde
Department of Oncology Shanghai East Hospital School of Medicine, Tongji University Shanghai China.
Department of Radiation Oncology Huadong Hospital Fudan University Shanghai China.
J Cell Commun Signal. 2024 Feb 7;18(1):e12017. doi: 10.1002/ccs3.12017. eCollection 2024 Mar.
Gastric cancer (GC) is one of the most common solid cancers with high incidence and mortality worldwide. Chronic gastritis and consequent inflammatory microenvironment is known as a major cause leading to gastric carcinogenesis. Here we report that PIK3CD that encodes p110δ, a catalytic subunit of the class IA PI3Ks, is overexpressed and tumorigenic in GC and associated with tumor inflammatory microenvironment. By investigating the data from TCGA database and our immunohistochemical staining and quantitative real-time PCR results from clinical samples, we found PIK3CD exhibits higher expression level in GC tissues compared with adjacent non-tumorous stomach tissues. Genetic silencing of PIK3CD in GC cells retards proliferation and migration in vitro and tumorigenicity and metastasis in vivo. In contrast, enhanced expression of PIK3CD promotes these phenotypes in vitro. Furthermore, pharmacological inhibition of PIK3CD could reduce GC cell viability and colony formation capacities. More importantly, we reveal a relevant mechanism that PIK3CD, but not PIK3CA and PIK3CB, is transcriptionally regulated by the pro-inflammatory IL2/JAK3/STAT5 axis and tumor-infiltrating immune cells such as lymphocytes. These observations may setup a new crosstalk between tumor inflammatory microenvironment, IL2/JAK3/STAT5 signaling and PI3K/AKT signaling. Targeting PIK3CD may be a promising therapy strategy for GC.
胃癌(GC)是全球发病率和死亡率都很高的常见实体癌之一。慢性胃炎及随之而来的炎症微环境是导致胃癌发生的主要原因。在此我们报告,编码IA类磷脂酰肌醇-3-激酶(PI3K)催化亚基p110δ的PIK3CD在胃癌中过表达且具有致瘤性,并与肿瘤炎症微环境相关。通过研究来自TCGA数据库的数据以及我们对临床样本的免疫组织化学染色和定量实时PCR结果,我们发现与相邻的非肿瘤性胃组织相比,PIK3CD在胃癌组织中表达水平更高。在胃癌细胞中对PIK3CD进行基因沉默可抑制其体外增殖和迁移以及体内致瘤性和转移。相反,增强PIK3CD的表达可在体外促进这些表型。此外,对PIK3CD进行药理抑制可降低胃癌细胞的活力和集落形成能力。更重要的是,我们揭示了一种相关机制,即PIK3CD而非PIK3CA和PIK3CB受促炎的IL2/JAK3/STAT5轴以及淋巴细胞等肿瘤浸润免疫细胞的转录调控。这些观察结果可能建立了肿瘤炎症微环境、IL2/JAK3/STAT5信号传导和PI3K/AKT信号传导之间的新串扰。靶向PIK3CD可能是一种有前景的胃癌治疗策略。