| Literature DB >> 35501914 |
Zhonglin Wang1,2, Shuqin Li3, Feng Xu4, Jingyue Fu4, Jie Sun1, XinLi Gan1, Chuang Yang5, Zhongqi Mao6.
Abstract
BACKGROUND: Breast cancer is notorious for its increasing incidence for decades. Ascending evidence has demonstrated that translocase of inner mitochondrial membrane (TIMM) proteins play vital roles in progression of several types of human cancer. However, the biological behaviors and molecular mechanisms of TIMM8A in breast cancer remain not fully illustrated.Entities:
Keywords: Breast cancer; Prognosis; Proliferation; TIMM8A; ncRNA
Year: 2022 PMID: 35501914 PMCID: PMC9063222 DOI: 10.1186/s12935-022-02595-x
Source DB: PubMed Journal: Cancer Cell Int ISSN: 1475-2867 Impact factor: 6.429
Fig. 1The expression of TIMM8A in breast cancer. A The pan-cancer expression profile of TIMM8A in oncomine database. B The expression of TIMM8A in normal and tumor tissues of breast in TCGA and GTX data (***p < 0.001). C The expression of TIMM8A in Richardson Breast data from oncomine database (***p < 0.001). D The expression of TIMM8A in Turashvili Breast data from oncomine database (***p < 0.001). E The TIMM8A protein level in the Human Protein Atlas database. F The expression of TIMM8A mRNA in 25 breast cancer tissues and 15 normal breast tissues (***p < 0.001). G The expression profile of TIMM8A in GEPIA database. H, I the mutation of TIMM8A in breast cancer from cBioPortal database
Fig. 2The prognostic values of TIMM8A in breast cancer. A The association of TIMM8A mRNA expression and overall survival and disease-free survival was assessed in the GEPIA database. B Logistic regression analysis of the association between TIMM8A expression and clinicopathological characteristics in breast cancer patients from TCGA. C Univariate analysis of overall survival in the TCGA database. D Multivariate analysis of overall survival in the TCGA database
Fig. 3Functional annotation and predicted signaling pathways of TIMM8A. A Pathway coexpression network for the top 10 GSEA enriched canonical pathways. B Construction and analysis of a PPI network. C KEGG enrichment analysis for TIMM8A associated proteins. D Biological process (BP) analysis for TIMM8A associated proteins. E Cellular component (CC) analysis for TIMM8A associated proteins. F Molecular function (MF) analysis for TIMM8A associated proteins
Fig. 4The potential upstream ncRNAs of TIMM8A in breast cancer. A The coexpression of miRNAs and TIMM8A in starBase. B Kaplan‐Meier curves of breast cancer patients based on hsa-miR-34c-5p and hsa-miR-449a expression using Kaplan‐Meier plotter database. C Predicted binding site between hsa-miR-34c-5p and TIMM8A by TargetScan database. D The target regulatory relationship was verified using the dual luciferase reporter assay (**p < 0.01). E The predicted interacting circRNAs of hsa-miR-34c-5p and hsa-miR-449a. F Scheme of ncRNAs-TIMM8A axis
Fig. 5Silencing TIMM8A inhibits the proliferation of breast cancer in vitro. A TIMM8A inhibits proliferation of MDA-MB-231 and MCF7 cells by CCK8 assay (**p < 0.01). B TIMM8A decreases proliferating MDA-MB-231 and MCF7 cells by EdU assay (Scar bar = 100 µm). C The mitochondrial membrane potentials were determined by JC-1 assay (Scar bar = 50 µm). D Quantitative analysis of ratio of red/green fluorescent intensity (**p < 0.01, ***p < 0.001). E The effect of TIMM8A on apoptosis of breast cancer cells was analyzed by Western blot. F The ex vivo model was used to evaluate the effect of TIMM8A on proliferation marker Ki67 in breast cancer tissues (***p < 0.001)
Fig. 6Silencing TIMM8A inhibits tumor growth in vivo. A The tumor growth curves and the tumor pictures (insert) (*p < 0.05). B The tumor weights of control and TIMM8A inhibited groups (**p < 0.01). C Relative expression of TIMM8A mRNA in control and TIMM8A inhibited groups (**p < 0.01). D The expression levels of Caspase-3, Cleaved caspase-3, PCNA and TIMM8A in control and TIMM8A inhibited groups. E The xenograft tumors with Ki67 immunostaining and TUNEL staining (Scar bar = 200 µm)