| Literature DB >> 26948660 |
Magdalena Bodnar1, Magdalena Luczak2,3, Kinga Bednarek4, Lukasz Szylberg1, Andrzej Marszalek1,5, Reidar Grenman6,7, Krzysztof Szyfter4,8, Malgorzata Jarmuz-Szymczak4,9, Maciej Giefing10,11.
Abstract
Relapse and metastasis are the main causes of unfavorable outcome in head and neck cancers. Whereas, understanding of the molecular background of these processes is far from being complete. Therefore, in this study we aimed to identify potential biomarker candidates of relapse and metastasis in laryngeal squamous cell carcinoma (LSCC) by combining the 2D electrophoresis based protein screen and immunohistochemical analysis of candidate proteins. We screened three groups of LSCC cell lines derived from primary tumors, recurrent tumors and metastases and identified seven proteins that differed significantly in relative abundance between the analyzed groups. Among the identified proteins were the heat shock proteins HSP60 and HSP70 that were significantly downregulated both in recurrences- and metastases-derived cell lines but not in primary tumor-derived cell lines. Moreover, we identified significant upregulation of the annexin V, calreticulin and the inorganic pyrophosphatase (PPA1) exclusively in the metastases-derived cell lines. As these upregulated proteins could potentially become novel biomarkers of metastasis, we have compared their abundance in primary tumor LSCC N(0) cases, primary tumor LSCC N(+) cases as well as in LSCC metastases N(+). Our results show an intense increase of cytoplasmic PPA1 abundance in the N(+) (p = 0.000042) compared to the N(0) group. In summary, we show a group of proteins deregulated in recurrences and metastases of LSCC. Moreover, we suggest the PPA1 protein as a potential new biomarker for metastasis in this cancer.Entities:
Keywords: Biomarker; LSCC; Laryngeal cancer; Metastasis; PPA1
Mesh:
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Year: 2016 PMID: 26948660 PMCID: PMC4875942 DOI: 10.1007/s00726-016-2201-8
Source DB: PubMed Journal: Amino Acids ISSN: 0939-4451 Impact factor: 3.520
Short characteristic of the proteins showing different abundance between primary, recurrent tumors and metastases (2D comparative proteome profiling)
| Spot no. | Protein identification | Accession (SwissProt) | Sequence coverage (%) | Score | Peptides matched | Theoretical MW (kDa) | Theoretical pI | Fold change (compared to primary tumors) | |
|---|---|---|---|---|---|---|---|---|---|
| Recurrent | Metastases | ||||||||
| 1 | Annexin V | ANXA5_HUMAN | 51 | 163 | 16 | 35.9 | 4.94 | 0.83 |
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| 2 | Annexin III | ANXA3_HUMAN | 30 | 108 | 10 | 36.5 | 5.63 |
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| 3 | Calreticulin | CALR_HUMAN | 51 | 172 | 19 | 48.2 | 4.29 | 0.95 |
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| 4 | 60 kDa heat shock protein | CH60_HUMAN | 49 | 177 | 28 | 61.1 | 5.7 |
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| 5 | Heat shock 70 kDa protein 9 | GRP75_HUMAN | 41 | 170 | 23 | 73.9 | 5.87 |
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| 6 | Protein disulfide-isomerase A3 | PDIA3_HUMAN | 32 | 85 | 12 | 57.1 | 5.98 | 0.84 |
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| 7 | Inorganic pyrophosphatase PPA1 | IPYR_HUMAN | 52 | 161 | 12 | 33 | 5.54 | 1.02 |
|
Fold change <1 means downregulation; significant differences are bolded
Fig. 1a Representative example of the 2D PAGE analysis of primary tumor cell line. IEF was performed in pH 4–7. The proteins showing different abundance identified by mass spectrometry are indexed by numbers and boxed (see Table 1). b Examples of differentially expressed proteins
Fig. 2a The immunohistochemical staining of PPA1 in normal mucosa and laryngeal squamous cell carcinoma. Positive nuclear-cytoplasmic staining (brown), primary objective magnification ×10. b Median immunostaining of analyzed antigen in primary tumors, relative to lymph node involvement [N(0) vs. N(+)], and metastases in lymph nodes. IRS immunoreactive score