利用生物信息学分析LMO2在乳腺癌中的表达和功能
张明慧1, 李彦姝21. 中国医科大学 临床医学系, 沈阳 110122;
2. 中国医科大学 生命科学学院分子细胞生物学教研室, 教育部医学细胞生物学重点实验室暨卫健委细胞生物学重点实验室, 沈阳 110122
收稿日期:
2020-10-29出版日期:
2021-05-30发布日期:
2021-05-19通讯作者:
李彦姝E-mail:yslcmu@163.com作者简介:
张明慧(1998-),女,本科在读.基金资助:
国家自然科学基金(81902701);辽宁省自然科学基金(20180530037);2019年辽宁省大学生创新创业训练计划(201910159084)关键词: 乳腺癌, 肿瘤的基因表达调控, LMO2
Abstract: Objective To investigate LMO2 expression and the biological functions of its co-expressed genes in breast cancer (BC). Methods LMO2 expression levels in various tumor types were extracted from the Oncomine database. Differences in LMO2 expression in BC tissues and normal breast tissues were analyzed using GEPIA,and the prognostic value of LMO2 expression in breast cancer was evaluated using KM plotter database. A co-expression gene network associated with LMO2 in BC was constructed using the Coexpedia database,and co-expressed genes that scored > 3 were annotated using Funrich software. Hub genes with significant differential expression were identified using GEPIA. Correlations between LMO2 and hub genes,and the KEGG pathways associated with these genes were analyzed. Results LMO2 mRNA and protein expression levels were significantly lower in BC tissues than in normal tissues (P<0.05). Low LMO2 expression indicates a worse prognosis in patients with breast cancer. The main genes that co-expressed with LMO2 were ADGRL4,GIMAP6,PECAM1,TGFBR2,MEF2C,CD93,S1PR1,LHFP,GMFG,A2M,LDB2,KCTD12,PTPRB,and CAV1,whose biological functions were primarily enriched in signal transduction pathways. CAV1 was significantly up-regulated,and GIMAP6,TGFBR2,LHFP,and PTPRB were significantly down-regulated (P<0.05). LMO2 expression significantly correlated with that of GIMAP6 (r=0.51),TGFBR2 (r=0.46),LHFP (r=0.52),PTPRB (r=0.48),and CAV1 (r=0.43). Conclusion LMO2 was significantly downregulated in BC,and was also involved in breast cancer-related functions and pathways in conjunction with GIMAP6,TGFBR2,CAV1,and other hub genes.
Key words: breast neoplasms, gene expression regulation,neoplastic, LMO2
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