| Literature DB >> 25237833 |
Antje Neeb1, Simon Hefele2, Stefanie Bormann3, Walther Parson4, Fabian Adams5, Philipp Wolf5, Arkadiusz Miernik5, Martin Schoenthaler5, Malte Kroenig5, Konrad Wilhelm5, Wolfgang Schultze-Seemann5, Sigrun Nestel6, Georg Schaefer7, Huajie Bu7, Helmut Klocker7, Irina Nazarenko2, Andrew C B Cato1.
Abstract
Anterior gradient 2 (AGR2) is a gene predominantly expressed in mucus-secreting tissues or in endocrine cells. Its expression is drastically increased in tumors including prostate cancer. Here we investigated whether AGR2 transcript levels can be used as a biomarker to detect prostate cancer (PCa). Using a PCR-based approach, we could show that in addition to the wild-type (AGRwt long and short) transcripts, five other AGR2 splice variants (SV) (referred to as AGR2 SV-C, -E, -F, -G and -H) were present in cancer cell lines. In tissue biopsies, SV-H and AGR2wt (short) distinguished between benign and PCa (p ≤ 0.05 n = 32). In urine exosomes, AGR2 SV-G and SV-H outperformed serum PSA. Receiver operating characteristic (ROC) curves showed the highest discriminatory power of SV-G and SV-H in predicting PCa. AGR2 SV-G and SV-H are potential diagnostic biomarkers for the non-invasive detection of PCa using urine exosomes.Entities:
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Year: 2014 PMID: 25237833 PMCID: PMC4226713 DOI: 10.18632/oncotarget.2365
Source DB: PubMed Journal: Oncotarget ISSN: 1949-2553
Figure 1Cell-type specific expression of AGR2 variants
(A) Schematic representation of AGR2 wild-type and splice variants cloned from different prostate cancer cells. Exons are presented as rectangles. (B) qRT-PCR showing the level of expression of the different transcripts in prostate and non-prostate cell lines. The expression of the transcripts was determined using splice variant-specific primers and the results are presented relative to the expression of the human ribosomal subunit 36B4. The bar charts are averages of 3 independent experiments ± standard deviation.
Figure 2Expression level of AGR2 splice variants in benign and prostate cancer
Total RNA isolated from benign and prostate carcinoma biopsies was used for cDNA synthesis and qRT-PCR was carried out with AGR2 splice variant specific primers. The results are presented as scatter plot of the expression level of the AGR2 splice variants relative to the level of expression of the human ribosomal subunit 36B4 (* represents p ≤ 0.05).
Figure 3Characterization of urine exosomes
Urine extracellular vesicles isolated by differential centrifugation were characterized by transmission electron microscopy and dynamic light scattering analysis. (A) Shown are the electron microscopy images of the vesicles (scale bar 500 nm) and (B and C) the size and mass distribution of the vesicles as determined by light scattering. (D) Protein lysates of urine sediments (Sed) or exosomes (Exo) from 3 prostate cancer patients used in Western blot analysis with specific antibodies against Tsg101, CD9, Hsp70, PSMA and control GAPDH specific antibody to demonstrate equal protein loading.
Figure 4AGR2 transcript levels in urine sediments and exosomes
RNA from urine sediments and exosomes from five PCa patients were used for cDNA and the expression of AGR2 wild-type and variants was analyzed. Shown as bar charts are the expression levels of the AGR2 transcripts relative to the level of expression of the human ribosomal subunit 36B4. The results are the mean ± SEM.
Descriptive characteristics of the study population
| Prostate cancer | Benign Hyperplasia (BPH) | |
|---|---|---|
| Age [years] | ||
| Mean / Stdev / Median | 62.25 / 6.46 / 63.0 | 65.80 / 7.93 / 65 |
| Range | 53.0 – 71.0 | 54.0 – 79.0 |
| Mean / Stdev / Median | 11.66 / 9.08 / 7.79 | 5.242 / 2.847 / 5.795 |
| Range | 3.0 – 33.5 | 1.29 – 10.40 |
| 6 | 0/24 (0.0) | - |
| 7 | 21/24 (87.5) | - |
| 8 to 10 | 3/24 (12.5) | - |
| 1 | 3/24 (12.5) | - |
| 2 | 13/24 (54.2) | - |
| 3 | 8/24 (33.3) | - |
| N0 | 20/24 (83.3) | - |
| N1 | 4/24 (16.7) | - |
| R0 | 20/24 (83.3) | - |
| R1 | 4/24 (16.7) | - |
| Low | 0/24 (0.0) | - |
| Intermediate | 1/24 (4.2) | - |
| High | 23/24 (95.8) | - |
Figure 5Expression of AGR2 transcripts in urine exosomes
Exosomes were isolated from urine and were directly used for RNA preparation followed by qRT-PCR analysis. (A) Shown as scatter plots are the transcript levels relative to the level of expression of human ribosomal subunit 36B4. (* represents p ≤ 0.05, ** p ≤ 0.01 and *** p ≤ 0.001). (B) Receiver operator characteristic (ROC) curves of the markers urine AGR2 wt transcript, svH, svG and serum PSA.