| Literature DB >> 25889691 |
Jintang He1, Athena A Schepmoes2, Tujin Shi3, Chaochao Wu4, Thomas L Fillmore5, Yuqian Gao6, Richard D Smith7, Wei-Jun Qian8, Karin D Rodland9, Tao Liu10, David G Camp11, Anshu Rastogi12, Shyh-Han Tan13, Wusheng Yan14, Ahmed A Mohamed15, Wei Huang16, Sreedatta Banerjee17, Jacob Kagan18, Sudhir Srivastava19, David G McLeod20,21, Shiv Srivastava22, Gyorgy Petrovics23, Albert Dobi24, Alagarsamy Srinivasan25.
Abstract
BACKGROUND: The established methods for detecting prostate cancer (CaP) are based on tests using PSA (blood), PCA3 (urine), and AMACR (tissue) as biomarkers in patient samples. The demonstration of ERG oncoprotein overexpression due to gene fusion in CaP has thus provided ERG as an additional biomarker. Based on this, we hypothesized that ERG protein quantification methods can be of use in the diagnosis of prostate cancer.Entities:
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Year: 2015 PMID: 25889691 PMCID: PMC4342100 DOI: 10.1186/s12967-015-0418-z
Source DB: PubMed Journal: J Transl Med ISSN: 1479-5876 Impact factor: 5.531
Detection of recombinant ERG3 protein spiked into LNCaP cells using PRISM-SRM
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| VIVPADPTLWSTDHVR | ND | √ | √ | √ |
| HMPPPNMTTNER | ND | ND | √ | √ |
| ITTRPDLPYEPPR | ND | ND | √ | √ |
√ indicates that the peptide was detected.
ND indicates that the peptide was not detected.
Figure 1Detection of ERG peptide VIVPADPTLWSTDHVR from LNCaP cells. Different amounts of recombinant ERG3 protein (6.7 pg, 20 pg, 67 pg, 400 pg) was spiked into LNCaP cells. A. XICs of peptide VIVPADPTLWSTDHVR from the different data points. Heavy indicate heavy internal standard peptide; Light indicate endogenous peptide. N.D.: not detected. B. Response curve.
Detection of ERG protein in VCaP cells spiked into LNCaP cells using PRISM-SRM
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| VIVPADPTLWSTDHVR | ND | ND | ND | ND | √ |
| HMPPPNMTTNER | ND | ND | ND | ND | √ |
√ indicates that the peptide was detected.
ND indicates that the peptide was not detected.
Figure 2Detection of ERG protein in the VCaP-LNCaP system. XICs of the two ERG peptides detected from ~ 10,000 VCaP cells. Heavy indicates heavy internal standard peptide; Light indicates endogenous peptide.
Detection of ERG protein in VCaP cells spiked into human female urine
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| VIVPADPTLWSTDHVR | ND | √ | √ | √ | √ | √ | √ | √ |
| HMPPPNMTTNER | ND | ND | ND | √ | √ | √ | √ | √ |
| MVGSPDTVGMNYGSYMEEK | ND | ND | ND | ND | ND | ND | √ | √ |
| ITTRPDLPYEPPR | ND | ND | ND | ND | ND | ND | ND | √ |
√ indicates that the peptide was detected.
ND indicates that the peptide was not detected.
Figure 3Detection of ERG peptide VIVPADPTLWSTDHVR in the VCaP-urine system. A. The number of VCaP cells for each PRISM-SRM analysis data point was 600, 3,000, 6,000, 12,000, 30,000, 60,000, 170,000, respectively. Heavy indicates heavy internal standard peptide; Light indicates endogenous peptide. B. The light/heavy peak area ratio shows good linearity.
Figure 4Detection of ERG protein using ELISA. A. Evaluation of ERG antibody reactivity in the ELISA format. B. Capture and detection antibody combinations for development of antigen capture assay (sandwich ELISA). C. The limit of detection of purified recombinant ERG protein was 30 pg. D. The limit of detection of ERG protein from VCaP cell lysates (without mixing with LNCaP cells) was 10,000 cells.
Figure 5Western blot analysis for detection of ERG protein in cell lysates. A. A 55 kDA band corresponding to ERG protein was observed in HEK293 cell lysates spiked with purified recombinant protein in all lanes except the HEK293 only sample. GAPDH was used as a loading control. B. The limit of detection was 0.195 ng of ERG protein in western blot analysis. C. Cell mixtures containing VCaP and LNCaP cells, kept constant with 100,000 total cells, revealed that 10,000 VCaP cells are detected by western blot. GAPDH was again used as a loading control.
Figure 6Real time quantitative RT-PCR evaluation of in VCaP cells spiked into female urine. mRNA transcripts of ERG3 were detectable in as few as 100 cells.
RNA assessment by Bioanalyzer and Nanodrop
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| 106 LNCaP | 100 | 8.3 | 2800 | 110 | 1.93 | 3080 |
| 106 LNCaP + 101 VCaP | 540 | 8.6 | 15120 | 513 | 1.96 | 14364 |
| 106 LNCaP + 102 VCaP | 280 | 8.9 | 7840 | 302 | 1.91 | 8456 |
| 106 LNCaP + 103 VCaP | 350 | 9 | 9800 | 393 | 1.84 | 11004 |
| 106 LNCaP + 104 VCaP | 350 | 8.6 | 9800 | 333 | 2.03 | 9324 |
| 106 LNCaP + 105 VCaP | 250 | 8.8 | 7000 | 277 | 1.9 | 7756 |
| 5 mL Urine | 30 | ND | 840 | 11 | ND | 308 |
| 5 mL Urine + 102 VCaP | 30 | ND | 840 | 6 | ND | 168 |
| 5 mL Urine + 103 VCaP | 10 | ND | 280 | 8 | ND | 224 |
| 5 mL Urine + 104 VCaP | 80 | ND | 2240 | 9 | ND | 252 |
| 5 mL Urine + 105 VCaP | 10 | ND | 280 | 22 | ND | 616 |
| 5 mL Urine + 106 VCaP | 130 | ND | 3640 | 83 | ND | 2324 |
ND indicates that a reading was not detected.
Figure 7Detection of using NanoString. ERG copy number was detected from 10,000 VCaP cells spiked into LNCaP cells, as well as VCaP cells spiked into 5 mL of female urine.
Detection of ERG in VCaP cells spiked into LNCaP cells and human female urine using NanoString nCounter
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| 106 LNCaP | ND | ND | ND | ND | 81.85 | 1033.8 | ND |
| 5 mL Urine | ND | ND | ND | ND | 57.55 | 1004.12 | 10945.38 |
ND indicates that a reading was not detected.