| Literature DB >> 30220890 |
Gajanan Sathe1,2,3, Chan Hyun Na4,5,6, Santosh Renuse2,4, Anil Madugundu1,2,3, Marilyn Albert5, Abhay Moghekar5, Akhilesh Pandey1,4,7.
Abstract
BACKGROUND: Cerebrospinal fluid (CSF) is an important source of potential biomarkers that affect the brain. Biomarkers for neurodegenerative disorders are needed to assist in diagnosis, monitoring disease progression and evaluating efficacy of therapies. Recent studies have demonstrated the involvement of tyrosine kinases in neuronal cell death. Thus, neurodegeneration in the brain is related to altered tyrosine phosphorylation of proteins in the brain and identification of abnormally phosphorylated tyrosine peptides in CSF has the potential to ascertain candidate biomarkers for neurodegenerative disorders.Entities:
Keywords: CSF; Phosphotyrosine; Proteome
Year: 2018 PMID: 30220890 PMCID: PMC6136184 DOI: 10.1186/s12014-018-9205-1
Source DB: PubMed Journal: Clin Proteomics ISSN: 1542-6416 Impact factor: 3.988
Fig. 1A schematic of the workflow used to study the phosphotyrosine profiling of CSF. Phosphotyrosine peptides from CSF of three NPH patients were enriched using antibody-based approach and enriched peptides were analyzed on mass spectrometer. The subset of phosphotyrosine sites identified in our discovery experiment were validated in the another set of 8 normal individual CSF using parallel reaction monitoring (PRM) assays
Fig. 2Summary of phosphotyrosine-containing peptides/proteins in CSF. a Overlap of phosphotyrosine peptides identified from three individuals. We identified 18 phosphopeptides common across the CSF of three individuals, b localization of tyrosine phosphorylated proteins identified in CSF of NPH patients. c Functional categorization of tyrosine phosphorylated protein identified in CSF based on the molecular function, d functional categorization of tyrosine phosphorylated protein identified in CSF based on the biological processes
A list of proteins that are validated using PRM
| Gene symbol | Protein | Peptide sequence | Site |
|---|---|---|---|
|
| Diazepam binding inhibitor, acyl-CoA binding protein | TKPSDEEMLFIYGHYK | Y90 |
|
| Transferrin | EGYYGYTGAFR | Y536 |
|
| Beta-1, 4-glucuronyltransferase 1 | YEAAVPDPR | Y163 |
|
| CD59 glycoprotein preproprotein | ENELTYYCCK | Y86 |
| Thy-1 cell surface antigen | VLYLSAFTSK | Y90 |
A list of proteins identified that are unique in this study
| Gene symbol | Protein | Peptide sequence | Site |
|---|---|---|---|
|
| CWF19 like 1, cell cycle control | CGSALVSSLATGLKPRYHFAALEK | Y192 |
|
| Inositol polyphosphate-5-phosphatase D | EKLYDFVK | Y865 |
|
| Beta-1, 4-glucuronyltransferase 1 | YEAAVPDPR | Y163 |
|
| Tyrosine-protein phosphatase non-receptor type 11 | IQNTGDYYDLYGGEK | Y584 |
|
| Glucose-6-phosphate dehydrogenase | VQPNEAVYTK | Y432 |
|
| FGR proto-oncogene | LIKDDEYNPCQGSK | Y412 |
|
| Paxillin | VGEEEHVYSFPNK | Y124 |
|
| Calmodulin 2 | DGNGYISAAELR | Y148 |
Fig. 3MS/MS spectra for the phosphotyrosine-containing peptides/proteins uniquely identified in ours study. a MS/MS spectra for doubly phosphorylated peptide identified from CWF19, b representative MS/MS spectra for phosphorylated peptide identified from G6PD, c representative MS/MS spectra for phosphorylated peptide identified from PTPN6 and d representative MS/MS spectra for phosphorylated peptide identified from PXN
Fig. 4Validation of tyrosine phosphorylated peptides in control CSF samples by parallel reaction monitoring. a Diazepam binding inhibitor, acyl-CoA binding protein (DBI), b transferrin (TF) and c CD 59 and d beta-1,4-glucuronyltransferase 1(B4GAT1)