1.COPB1 promotes the development and progression of esophageal squamous cell carcinoma by activating the PI3K/AKT pathway and regulating the tumor immune microenvironment
LIN Yan ; YU Shuangjian ; JIA Sifan ; LI Feiyu ; ZHAO Chenpu ; DONG Zhiming ; SHEN Supeng ; LIANG Jia ; GUO Yanli
Chinese Journal of Cancer Biotherapy 2025;32(12):1236-1246
[摘 要] 目的:探究包被蛋白复合体β1亚基(COPB1)在食管鳞状细胞癌(ESCC)中的表达,及其对ESCC细胞恶性生物学行为的影响、作用机制及临床意义。方法:采用2014~2018年间在河北医科大学第四医院生物样本库中82例ESCC组织及癌旁组织,常规培养正常食管鳞状上皮细胞HEEC和食管癌细胞KYSE-150、KYSE-170、Eca109、TE1、KYSE-30、KYSE-450,用转染试剂将pcDNA3.1-vector(空载体)、pcDNA3.1-COPB1载体,si-NC和si-COPB1转染至KYSE-150、TE1细胞中,记为NC、COPB1-OE、si-NC和si-COPB1组。用数据库数据分析COPB1 mRNA在泛癌组织中的表达及其表达与免疫细胞浸润的关系,qPCR法检测ESCC组织和细胞中COPB1、PIK3CB、CD68、CD163、CD206、ARG1、IL-10 mRNA水平表达情况,WB法检测ESCC组织和各组细胞中的COPB1、PI3K、CD68、CD163、CD206、p-AKT蛋白表达,克隆形成实验和MTS实验检测各组细胞的增殖能力,划痕愈合实验和Transwell实验检测各组细胞的迁移和侵袭能力,免疫组织化学染色(IHC)法检测ESCC组织中COPB1和CD206蛋白表达。以人单核细胞白血病细胞(THP-1)构建巨噬细胞模型,用佛波酯(PMA)和IL-3和IL-4和ESCC细胞上清液诱导巨噬细胞转型,用qPCR和WB法检测CD68和CD206m RNA和蛋白的表达。结果:COPB1在泛癌组织和ESCC组织中均呈高表达且与淋巴结转移和TNM分期有关联(均P < 0.01),COPB1高表达的ESCC患者总生存期短(P < 0.05),COPB1是潜在的ESCC的诊断标志物。COPB1在KYSE-150和TE1细胞中也呈高表达(均P < 0.05),过表达或敲减COPB1可明显抑制或促进KYSE-150和TE1细胞的增殖能力、迁移和侵袭能力(均P < 0.05)。COPB1表达变化诱导的差异表达基因主要富集于PI3K/AKT通路(均P < 0.001), COPB1可促进PI3K/AKT通路的活化(P < 0.05),COPB1高表达可导致M2型巨噬细胞浸润增加(P < 0.05),COPB1高表达促进TAM/M2极化(P < 0.05)。结论:COPB1在ESCC组织中呈高表达,其可激活PI3K/AKT通路及调控肿瘤免疫微环境促进 ESCC发生发展,COPB1有望成为ESCC诊断和预后的生物标志物及治疗靶点。
2.Relationship between Kapβ2-mediated nuclear translocation of hnRNPA2/B1 and sevoflurane-induced brain neurotoxicity: a cellular experiment
Feiyu JIA ; Qiang WANG ; Chenyi YANG ; Xiaoqing WANG ; Zhuo YANG ; Haiyun WANG
Chinese Journal of Anesthesiology 2023;43(3):297-301
Objective:To evaluate the relationship between Karyopherin β2 (Kapβ2)-mediated nuclear translocation of nuclear inhomogeneous ribonucleoprotein A2/B1 (hnRNPA2/B1) and sevoflurane-induced brain neurotoxicity in a cellular experiment.Methods:The mouse hippocampal neuronal cell line HT22 cells were inoculated in confocal culture dishes and 6-well culture plates at a density of 2×10 5 cells/well and 1×10 6 cells/well and divided into 4 groups( n=12 each) by a random number table method: control group (GFP-C group) carrying green fluorescent protein (GFP) with empty adenovirus transfection, sevoflurane group (GFP-Sev group) carrying GFP with empty adenovirus transfection, control group (GFP-Sev group) transfected with Kapβ2 gene-overexpressing adenovirus, and sevoflurane group (Kapβ2-Sev group) transfected with Kapβ2 gene-overexpressing adenovirus. After 48 h of conventional incubation, empty adenovirus-carrying GFP (GFP-C and GFP-Sev groups) and Kapβ2 gene-overexpressing adenovirus (Kapβ2-C and Kapβ2-Sev groups) were transfected. After 48 h of transfection, the cells were conventionally incubated continuously in GFP-C and Kapβ2-C groups, and the cells were incubated for 3 h with 3% sevoflurane and then were conventionally incubated for 48 h in GFP-Sev and Kapβ2-Sev groups. The expression of Kapβ2, synaptophysin (SYP), postsynaptic density protein 95 (PSD95) and hnRNPA2/B1 nucleoplasmic ratio were measured in cells by Western blot. Immunofluorescence assay was used for hnRNPA2/B1 subcellular localization. Results:Compared with GFP-C group, the expression of SYP and PSD95 was significantly down-regulated, hnRNPA2/B1 nucleoplasmic ratio was decreased, and cytoplasmic hnRNPA2/B1 expression was up-regulated in GFP-Sev group, and Kapβ2 expression was significantly up-regulated in Kapβ2-C group ( P<0.05). Compared with Kapβ2-C group, the expression of SYP and PSD95 was significantly down-regulated, hnRNPA2/B1 nucleoplasmic ratio was decreased, and cytoplasmic hnRNPA2/B1 expression was up-regulated in Kapβ2-Sev group ( P<0.05). Compared with GFP-Sev group, the expression of Kapβ2, SYP and PSD95 was significantly up-regulated, hnRNPA2/B1 nucleoplasmic ratio was increased, and cytoplasmic hnRNPA2/B1 expression was down-regulated in Kapβ2-Sev group ( P<0.05). Conclusions:Kapβ2-mediated hnRNPA2/B1 nuclear translocation may be the endogenous protective mechanism against sevoflurane-induced brain neurotoxicity.

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