| Literature DB >> 25605021 |
Weiwei Nie1, Weisun Huang1, Wenwen Zhang2, Jing Xu2, Wei Song1, Yanru Wang1, Aiyu Zhu1, Jiayan Luo2, Guichun Huang2, Yucai Wang3, Xiaoxiang Guan1,2.
Abstract
Previous studies have indicated that Her-2 induction causes a strong decrease in thioredoxin interaction protein (TXNIP) in breast cancer cells. However, little is known regarding the prognostic value of TXNIP in clinical breast cancer patients with anti-Her-2 treatment. Using a tissue microarray, we detected TXNIP and p27 expression in breast cancer tissue, as well as corresponding noncancerous tissues. We found that TXNIP expression was associated with better overall survival (OS) in these 150 breast cancer patients and that TXNIP and Her-2 expression status were significantly inversely correlated (r=-0.334, P<0.001). These results were validated in another 101 breast cancer tissue samples (r=-0.422, P<0.001). Moreover, TXNIP expression increased significantly following treatment of the human breast cancer cell lines BT474 and SK-BR-3 with a Her-1/2 inhibitor. Furthermore, TXNIP transfection induced p27 expression and G1 cell cycle arrest and apoptosis. Taken together, our findings suggest that TXNIP plays a critical role in anti-Her-1/Her-2 treatment and may be a potential prognostic marker in breast cancer.Entities:
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Year: 2015 PMID: 25605021 PMCID: PMC4413633 DOI: 10.18632/oncotarget.3096
Source DB: PubMed Journal: Oncotarget ISSN: 1949-2553
Figure 1The association of TXNIP and p27 with OS in breast cancer tissues and NCTs in a tissue-array
(A) Low expression of TXNIP and negative expression of p27 in breast cancers compared with NCTs were demonstrated by IHC of breast cancer tissues and NCTs. (B) High TXNIP or positive p27 expression was associated with longer OS (P =0.001, P =0.012, respectively). (C) TXNIP and p27 expressions were evaluated by western blotting 48 h after transfection with the TXNIP overexpression plasmid. (D) p27 localization and expression were determined by fluorescent microscopy after transfection with TXNIP overexpression plasmid. Nuclei were stained with DAPI.
Relationship between expression of TXNIP and clinicopathologic characteristics of breast cancer patients
| Variables | TXNIP high (n=48) | TXNIP low (n=102) | Long-rank test ( | |||
|---|---|---|---|---|---|---|
| No. | % | No. | % | |||
| Age | 0.155 | 0.089 | ||||
| ≤53 years | 33 | 68.8 | 57 | 55.9 | ||
| >53 years | 15 | 31.2 | 45 | 44.1 | ||
| Histological | 0.688 | < 0.001 | ||||
| I | 4 | 9.1 | 11 | 11.3 | ||
| II-III | 40 | 90.9 | 86 | 88.7 | ||
| TNM stage | 0.025 | < 0.001 | ||||
| I-II | 39 | 83.0 | 65 | 65.0 | ||
| III-IV | 8 | 17.0 | 35 | 35.0 | ||
| ER status | 0.610 | 0.003 | ||||
| negative | 12 | 27.9 | 30 | 32.3 | ||
| positive | 31 | 72.1 | 63 | 67.7 | ||
| PR status | 0.420 | 0.029 | ||||
| negative | 15 | 34.1 | 38 | 41.3 | ||
| positive | 29 | 65.9 | 54 | 58.7 | ||
Note:
4 and 5 samples of the histological status of TXNIP high and low expression group were missed respectively.
1 and 2 samples of the TNM stage of TXNIP high and low expression group were missed respectively.
5 and 9 samples of ER status of TXNIP high and low expression group were missed respectively.
4 and 10 samples of PR status of TXNIP high and low expression group were missed respectively
TXNIP and p27 expression in breast cancers and NCTs microarray
| Breast cancers (n=150) | NCTs (n=90) | ||||
|---|---|---|---|---|---|
| No. | % | No. | % | ||
| TXNIP | 0.003 | ||||
| 0 | 70 | 46.7 | 20 | 22.2 | |
| + | 32 | 21.3 | 5 | 5.6 | |
| ++ | 40 | 26.7 | 40 | 44.4 | |
| +++ | 8 | 5.3 | 25 | 27.8 | |
| p27 | < 0.001 | ||||
| 0 | 65 | 43.3 | 9 | 10.0 | |
| + | 45 | 30.0 | 17 | 18.9 | |
| ++ | 28 | 18.7 | 35 | 38.9 | |
| +++ | 12 | 8.0 | 29 | 32.2 | |
Note: NCTs: corresponding noncancerous tissues. TXNIP or p27 expression between breast cancer and NCTs was tested by Two-Related-samples test.
Correlative analysis of the TXNIP expression with Her-2 at tumor microarray and tumor tissues
| Testing Set | Validation Set | |||
|---|---|---|---|---|
| Tumor microarray (n=150) | Tumor tissues (n=101) | |||
| Her-2 (positive) | Her-2(negative) | Her-2(positive) | Her-2 (negative) | |
| TXNIP(high) | 7 | 41 | 4 | 58 |
| TXNIP(low) | 43 | 46 | 16 | 23 |
Note:
13 samples of Her-2 status in TXNIP low expression group of tumor microarray were missed.
Correlative analysis of the p27expression with Her-2 at tumor microarray and tumor tissues
| Testing Set | Validation Set | |||
|---|---|---|---|---|
| Tumor microarray (n=150) | Tumor tissues (n=101) | |||
| Her-2 (positive) | Her-2(negative) | Her-2(positive) | Her-2 (negative) | |
| p27(positive) | 18 | 62 | 4 | 45 |
| p27(negative) | 32 | 25 | 16 | 36 |
Note:
5 samples of Her-2 status in p27 positive group of tumor microarray were missed.
8 samples of Her-2 status in p27 negative group of tumor microarray were missed.
Correlative analysis of the TXNIP and p27expression at tumor microarray and tumor tissues
| Testing Set | Validation Set | |||
|---|---|---|---|---|
| Tumor microarray (n=150) | Tumor tissues (n=101) | |||
| TXNIP (high) | TXNIP(low) | TXNIP(high) | TXNIP (low) | |
| p27(positive) | 39 | 46 | 26 | 23 |
| p27(negative) | 9 | 56 | 11 | 41 |
Figure 2TXNIP causes G cell cycle arrest and inhibits cell proliferation in HER-1/2 positive breast cancer cell lines
(A and B) The percentage of G1 phase arrest and apoptosis of BT474 and SK-BR-3 cells was determined via flow cytometry 48 h after transfection with the TXNIP overexpression plasmid. (C) The colony formation assay was used to measure the proliferating ability of BT474 and SK-BR-3 cells. (D) Transfected cells were treated with 0.5 μM lapatinib for 48 h, cell numbers were counted and cell viability was determined by trypan blue dye exclusion. *P < 0.05, ** P < 0.01.
Figure 3Her-1/2 pathway inhibitors regulate TXNIP protein and mRNA expression
(A and B) After treatment with 10 μg/ml cetuximab, 20 μg/ml trastuzumab or 0.5 μM lapatinib, TXNIP and p27 protein and mRNA expression were determined by western blotting and qRT-PCR. (C) A firefly luciferase reporter containing the TXNIP promoter sequence was transfected into BT474 and SK-BR-3 cells along with 10 μg/ml cetuximab, 20 μg/ml trastuzumab or 0.5 μM lapatinib. Cells were assayed 24 h after transfection, using a luciferase assay kit. Results were expressed relative to the luciferase activity in control cells (which was set to 1). The results are presented as the mean ± S.D. *P < 0.05, **P < 0.01.
Figure 4Schematic model demonstrating the critical role of TXNIP and p27 in Her-1/2 mediated cell proliferation in breast cancer cell