| Literature DB >> 27588467 |
Jifang Liu1,2, Zhongwen Luo1, Lan Zhang1, Ling Wang1,3,4, Qian Nie1,4, Zheng-Feng Wang3,5, Zhaoxia Huang3,4, Xiaohui Hu3,4, Lili Gong1, Andre-Patrick Arrigo1, Xiangcheng Tang1, Jia-Wen Xiang4, Fangyuan Liu1, Mi Deng3, Weike Ji3, Wenfeng Hu3, Ji-Ye Zhu5, Baojiang Chen6, Julia Bridge7, Michael A Hollingsworth8, James Gigantelli3, Yizhi Liu1, Quan D Nguyen3, David Wan-Cheng Li1,3,4,8.
Abstract
Our recent study has shown that αA-crystallin appears to act as a tumor suppressor in pancreas. Here, we analyzed expression patterns of αA-crystallin in the pancreatic tumor tissue and the neighbor normal tissue from 74 pancreatic cancer patients and also pancreatic cancer cell lines. Immunocytochemistry revealed that αA-crystallin was highly expressed in the normal tissue from 56 patients, but barely detectable in the pancreatic tumor tissue. Moreover, a low level of αA-crystallin predicts poor prognosis for patients with pancreatic duct adenocarcinoma (PDAC). In the 12 pancreatic cell lines analyzed, except for Capan-1 and Miapaca-2 where the level of αA-crystallin was about 80% and 65% of that in the control cell line, HPNE, the remaining pancreatic cancer cells have much lower αA-crystallin levels. Overexpression of αA-crystallin in MiaPaca-1 cells lacking endogenous αA-crystallin significantly decreased its tumorigenicity ability as shown in the colony formation and wound healing assays. In contrast, knockdown of αA-crystallin in the Capan-1 cells significantly increased its tumorigenicity ability as demonstrated in the above assays. Together, our results further demonstrate that αA-crystallin negatively regulates pancreatic tumorigenesis and appears to be a prognosis biomarker for PDAC.Entities:
Keywords: cancer therapy; pancreatic cancer; small heat shock protein; tumor suppression; αA
Mesh:
Substances:
Year: 2016 PMID: 27588467 PMCID: PMC5323194 DOI: 10.18632/oncotarget.11668
Source DB: PubMed Journal: Oncotarget ISSN: 1949-2553
Figure 1Contrast expression patterns of αA-crystallin in pancreatic cancer tissues and para-tumor tissues
A. Representative images of immunohistochemical (IHC) assays of αA-crystallin in paired pancreatic tumors and para-tumor tissues. Scar bars, 50μm. B. Quantitation of high or low levels of αA-crystallin expression in pancreatic cancer samples and para-tumor tissues.
Associations of αA-Crystallin Expression with Clinicopathological Parameters in 74 PDAC Patients
| Characteristics | n | αA-Crystallin Expression | ||
|---|---|---|---|---|
| High | Low | |||
| | 51 | 12 | 39 | 0.178 |
| | 23 | 9 | 14 | |
| 0.282 | ||||
| | 48 | 15 | 33 | |
| | 26 | 5 | 21 | |
| | 55 | 17 | 38 | 0.558 |
| | 19 | 4 | 15 | |
| 0.578 | ||||
| 23 | 5 | 18 | ||
| | 51 | 16 | 35 | |
| 0.019 | ||||
| | 6 | 4 | 2 | |
| | 53 | 16 | 37 | |
| | 15 | 1 | 14 | |
| | 31 | 11 | 20 | 0.004 |
| | 43 | 5 | 33 | |
| | 38 | 9 | 29 | 0.442 |
| | 36 | 12 | 24 | |
P-values were two-tailed and based on the Pearson chi-square test. P<0.05 are statistically significant.
Figure 2Prognostic significance assessed by Kaplan-Meier survival curves and log-rank tests
Comparison of overall survival (OS) according to αA-crystallin expression.
Multivariate Analyses of Factors Associated with Overall Survival
| Variable | OS | |
|---|---|---|
| Hazard Ratio | ||
| Differentiation (well/moderate vs poor) | 0.816 | 0.755 |
| PT classification (pT1/pT2 vs pT3) | 1.151 | 0.817 |
| Lymph node (pN0 vs pN1) | 0.754 | 0.525 |
| Neural infiltration (yes vs no) | 0.890 | 0.801 |
| αA crystallin (high vs low) | 2.828 | 0.017 |
Figure 3Detection of αA-crystallin mRNA and protein expression in pancreatic cancer cell lines
A. mRNA levels of αA-crystallin was determined by semi-quantitative RT-PCR assay. Total RNAs were extracted from 12 pancreatic cell lines (Panc-1, Bxpc-3, Miapaca-1, Miapaca-2, Hs766T, Capan-1, Capan-2, Aspc-1, HPAF, CFPAC-1, Su86.86 and HPAC) and HPNE cells (as control), then were used for RT-PCR analyses respectively. B. Western blot assays were performed to detect the expression of αA crystallin protein in 12 pancreatic cell lines and HPNE cells. Total proteins were prepared and subjected to western blot assay to determine the expression of αA-crystallin protein. β-actin was used as an internal control. The data shown are representative of three independent experiments. Note that while mRNA was detected in Miapaca-2, Capan-1, Panc-1, CFPAC-1 and HPAC-1, αA-crystallin protein was detected with moderate levels in Miapaca-1 and Capan-1 but much reduced in other pancreatic cancer cell lines in comparison with the control cell, HPNE.
Figure 4Effects of αA-crystallin expression on cell anchorage-independent growth
A. Western blot detection of exogenous αA-crystallin in Miapaca-1 cells stably transfected with vector or αA-crystallin. The stable clones were selected using G418 (400 ng/ml) selection. B. The stable clones, pEGFP-MiaPaCa-1 or pEGFP-αA-Miapaca-1 were used for the soft agar colony formation assays. Representative cell colonies in soft agar are shown here. C. Quantitative analyses of colony numbers and sizes shown in Figure B panels. Values are the means ±SD from three independent experiments.
Figure 5Effects of αA-crystallin silence on cell anchorage-independent growth
A. Western blot detection of endogenous αA-crystallin in Capan-1 cells stably transfected with control silence vector, pshRNA-mock; or αA-crystallin silence expression vector, pshRNA-αA and selected with purimycin (10 ng/ml). B. The stable clones, psh-Mock-Capan-1 or psh-αA-Capan-1 were used for the soft agar colony formation assays. Representative cell colonies in soft agar are shown here. C. Quantitative analyses of colony numbers and sizes shown in Figure B panels. Values are the means ±SD from three independent experiments.
Figure 6Up-regulation of αA-crystallin retards cell migration A & B. and silence of αA-crystallin promotes cell migration C & D
A. Wound healing assay was performed on monolayers of Miapaca-1 cells stably transfected with control vector, or αA-crystallin expression vector. The Representative results were recorded at 0, 24 h and 48 h after wounds were made. 0 h was considered as 100% gap. B. The distance of the wound was measured at 24 and 48 hours along the scratch wound. Values are the means±SD from three independent experiments. C. Wound healing assay was performed on monolayers of Capan-1 cells stably transfected with psh-mock-vector, or psh-αA-crystallin. The Representative results were recorded at 0, 24 h and 48 h after wounds were made. 0 h was considered as 100% gap. D. The distance of the wound was measured at 24 and 48 hours along the scratch wound. Values are the means±SD from three independent experiments.