| Literature DB >> 31139560 |
Caibin Fan1, Chunchun Zhao1, Fei Wang1, Shugen Li1, Jianqing Wang1.
Abstract
It is well established that the PTEN (Phosphatase and Tensin Homolog) mutant is a frequently mutated gene found in clear cell renal cell carcinoma (ccRCC), making it a potential biomarker for individualized treatment opinions. Here, in the present study, we designed a method to evaluate the significance of the PTEN mutation in the prognosis and drug selection of ccRCC, determine the potential changing pathways and genes associated with the mechanisms. The most recent TCGA data shows that the PTEN mutation is found in 5% of ccRCC patients. In total, 2,569 genes were identified as DEGs. GO and KEGG analysis suggested that DEGs were significantly enriched in categories associated with cell division and multiple metabolic progressions. The top 10 genes, ranked by degree, were identified as hub genes from the protein-protein interaction network (PPI). What is more, patients with the PTEN mutation were associated with a worsened prognosis of ccRCC. Data from the GDSC database indicated that the selective AKT inhibitor, GSK690693, is a selective inhibitor for ccRCC with the PTEN mutation. Our findings have indicated that multiple genes and pathways may play a crucial role in PTEN mutation ccRCC, offering candidate targets and strategies for PTEN mutation ccRCC individualized treatment.Entities:
Keywords: PTEN mutation; RNA sequencing; TCGA; bioinformatics analysis; clear cell renal cell carcinoma
Year: 2019 PMID: 31139560 PMCID: PMC6518664 DOI: 10.3389/fonc.2019.00357
Source DB: PubMed Journal: Front Oncol ISSN: 2234-943X Impact factor: 6.244
Figure 1Mutation frequency (A) and types (B) of PTEN in ccRCC reproduced from the cancer Genome Atlas (TCGA) database.
Clinical characteristics of ccRCC patients and PTEN status in TCGA.
| 60.6 | 60 | |
| Range | 29–90 | 26–81 |
| Gender | ||
| Female | 154 | 3 |
| Male | 276 | 15 |
| T1 | 215 | 6 |
| T2 | 54 | 3 |
| T3 | 154 | 9 |
| T4 | 7 | 0 |
| N0 | 196 | 9 |
| N1 | 13 | 2 |
| NX | 221 | 7 |
| Stage I | 222 | 6 |
| Stage II | 45 | 3 |
| Stage III | 108 | 8 |
| Stage IV | 71 | 1 |
| G1 | 9 | 0 |
| G2 | 184 | 5 |
| G3 | 169 | 7 |
| G4 | 64 | 5 |
| GX | 3 | 1 |
Figure 2Mutations of PTEN are not associated with ccRCC prognosis and drug selection. (A) Correlation between the PTEN mutation and mRNA expression. (B,C) Kaplan–Meier survival and disease recurrence curves for renal clear cell carcinoma patients stratified by the PTEN mutation. (D,E) Scattered plot and volcano plot show that multiple cancer cell types with the PTEN mutation were significantly inhibited by GSK690693. (F) Reproduction of the GDSC database by excluding cancer of other types showed that RCC cells with the PTEN mutation was also significantly inhibited by GSK690693. *P < 0.05, ***P < 0.001.
Figure 3GSEA results of the PTEN mutation in ccRCC patients.
Figure 4DAVID enrichment results of differentially expressed genes. (A) Volcano plot for differentially expressed genes. (B) The GO enrichment terms of differentially expressed genes. (C) The KEGG pathway analysis of differentially expressed genes.
Figure 5Top three modules from the PPI network. (A,B) PPI network and GO and KEGG analyses of module 1. (C,D) PPI network and GO and KEGG analyses of module 2. (E,F) PPI network and GO and KEGG analyses of module 3.