| Literature DB >> 29631612 |
Seán Fitzgerald1,2, Virginia Espina3, Lance Liotta3, Katherine M Sheehan4, Anthony O'Grady4, Robert Cummins4, Richard O'Kennedy1,2,5, Elaine W Kay4, Gregor S Kijanka6,7.
Abstract
BACKGROUND: Stromal gene expression patterns predict patient outcomes in colorectal cancer. TRIM28 is a transcriptional co-repressor that regulates an abundance of genes through the KRAB domain family of transcription factors. We have previously shown that stromal expression of TRIM28 is a marker of disease relapse and poor survival in colorectal cancer. Here, we perform differential epithelium-stroma proteomic network analyses to characterize signaling pathways associated with TRIM28 within the tumor microenvironment.Entities:
Keywords: Colorectal cancer; Epithelium; Prognosis, tumor antigen; Stroma; TRIM28
Mesh:
Substances:
Year: 2018 PMID: 29631612 PMCID: PMC5891886 DOI: 10.1186/s12967-018-1465-z
Source DB: PubMed Journal: J Transl Med ISSN: 1479-5876 Impact factor: 5.531
Clinicopathological details of patient cohorts
| Factor | Number of patients ( | % |
|---|---|---|
| Gender | ||
| Female | 9 | 47.4 |
| Male | 10 | 52.6 |
| Age (years) | ||
| Median | 67 | – |
| Range | 47–88 | – |
| < 65 | 8 | 42.1 |
| ≥ 65 | 11 | 57.9 |
| Tumor site | ||
| Colon | 15 | 78.9 |
| Rectum | 4 | 21.1 |
| Tumor stagea | ||
| T3 | 13 | 68.4 |
| T4 | 6 | 31.6 |
| Node stagea | ||
| N0 | 11 | 57.9 |
| N1 | 2 | 10.5 |
| N2 | 6 | 31.6 |
| Metastasis stagea | ||
| M0 | 17 | 89.5 |
| M1 | 2 | 10.5 |
| Lymphovascular invasion | ||
| Yes | 7 | 36.8 |
| No | 12 | 63.2 |
| Differentiation | ||
| Well | 0 | 0 |
| Moderately | 17 | 89.5 |
| Poorly | 2 | 10.5 |
n number of patients, T tumor, N node, M metastasis
aTNM were staged according to the 5th edition of the AJCC Cancer Staging Manual
Fig. 1Epithelial to stromal TRIM28 Expression Ratios in colorectal cancer. a Moderate (2+) expression of TRIM28 in epithelial cells and absence (0) of staining in stromal compartments resulting in a high epithelial to stromal TRIM28 Expression Ratio score (×200). b Moderate (2+) expression of TRIM28 in both epithelial and stromal cells resulting in a low epithelial to stromal TRIM28 Expression Ratio score (×200). c A graph of distributions of all TRIM28 Expression Ratios cases. Absence of staining (0), weak (1+), moderate (2+), or strong (3+) TRIM28 staining intensities were found in both epithelial and stromal tissue compartments. The TRIM28 Expression Ratios are labelled by (open circle) epithelial and (filled square) stromal symbols, which are linked with straight lines for matched cases. The numbers above the connecting lines depict the total number of cases for each specific distribution of epithelial to stromal TRIM28 Expression Ratios. All tissues were stained using IHC with an anti-TRIM28 C42G12 antibody
Fig. 2Stromal proteomic networks for TRIM28 high (a) and low (b) ratio cases. Both, TRIM28 high (a) and TRIM28 low ratio (b) stromal tissue proteomic networks consist of three main sub-networks (green, pink and light green). Dominant nodes in the high ratio sub-networks are proteins linked to tumor progression and nodes prominent in the low ratio sub-networks are proteins linked to apoptosis. Nodes represent proteins quantified by RPPA; the bigger the node, the more significant correlations relative to that protein. Each line connecting 2 nodes represents a significant correlation between the nodes; the thicker the line, the higher the Spearman ρ correlation. Proteins are grouped on the basis of Spearman ρ values and the number of connections among a group of nodes; strongly correlated nodes are represented close to each other and with the same color
Fig. 3Epithelial proteomic networks for TRIM28 high (a) and low (b) ratio cases. Both, TRIM28 high (a) and TRIM28 low ratio (b) epithelial tumor tissue proteomic networks consist of three main sub-networks (green, pink and light green). Dominant nodes in the high ratio networks represent pro-survival pathways. Prominent nodes in the low ratio proteomic networks represent pro-apoptotic pathways. Nodes represent proteins quantified by RPPA; the bigger the node, the more significant correlations relative to that molecule. Each line connecting 2 nodes represents a significant correlation between the nodes; the thicker the line, the higher the Spearman ρ correlation. Proteins are grouped on the basis of Spearman ρ values and the number of connections among a group of nodes; strongly correlated nodes are represented close to each other and with the same color
Fig. 4High ratio TRIM28 stromal tissue shows low levels of MDM2 and high levels of COX-2. Box-plot diagrams of a MDM2 and b COX-2 represent RPPA intensity levels in the epithelium and stroma of TRIM28 high and low ratio cases. MDM2 is downregulated in stroma of TRIM28 high Ratio cases (p = 0.010, a). COX2 is elevated in stroma in TRIM28 high ratio cases were found (p = 0.002, b). The median (line within the box), mean (center of the diamond), 25th and 75th percentiles and maximum and minimum values are all displayed on each box-plot
Fig. 5Caspase-3 and caspase-7 protein levels are lower in the stroma of TRIM28 high ratio patients. a Caspase-3 and b caspase-7 RPPA intensity levels in the epithelium and stroma of TRIM28 high and low ratio patients are represented by box-plot diagrams. There is significantly less active caspase-3 and -7 present in the stroma of TRIM28 high ratio patients than in the stroma of TRIM28 low ratio patients (p = 0.04 and p = 0.036, respectively). The median (line within the box), mean (center of the diamond), 25th and 75th percentiles and maximum and minimum values are all displayed on each box-plot