Journal article
Clinical Proteomics, 2020
APA
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Na, C., Sathe, G., Rosenthal, L., Moghekar, A., Dawson, V., Dawson, T., & Pandey, A. (2020). Development of a novel method for the quantification of tyrosine 39 phosphorylated α- and β-synuclein in human cerebrospinal fluid. Clinical Proteomics.
Chicago/Turabian
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Na, C., G. Sathe, L. Rosenthal, A. Moghekar, V. Dawson, T. Dawson, and A. Pandey. “Development of a Novel Method for the Quantification of Tyrosine 39 Phosphorylated α- and β-Synuclein in Human Cerebrospinal Fluid.” Clinical Proteomics (2020).
MLA
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Na, C., et al. “Development of a Novel Method for the Quantification of Tyrosine 39 Phosphorylated α- and β-Synuclein in Human Cerebrospinal Fluid.” Clinical Proteomics, 2020.
BibTeX Click to copy
@article{c2020a,
title = {Development of a novel method for the quantification of tyrosine 39 phosphorylated α- and β-synuclein in human cerebrospinal fluid},
year = {2020},
journal = {Clinical Proteomics},
author = {Na, C. and Sathe, G. and Rosenthal, L. and Moghekar, A. and Dawson, V. and Dawson, T. and Pandey, A.}
}
Parkinson’s disease (PD) is the second most prevalent neurodegenerative disorder. Biomarkers that can help monitor the progression of PD or response to disease-modifying agents will be invaluable in making appropriate therapeutic decisions. Further, biomarkers that could be used to distinguish PD from other related disorders with PD-like symptoms will be useful for accurate diagnosis and treatment. C-Abl tyrosine kinase is activated in PD resulting in increased phosphorylation of the tyrosine residue at position 39 (Y39) of α-synuclein (α-syn) (pY39 α-syn), which contributes to the death of dopaminergic neurons. Because pY39 α-syn may be pathogenic, monitoring pY39 α-syn could allow us to diagnose presymptomatic PD and help monitor disease progression and response to treatment. We sought to investigate if increased phosphorylation of pY39 α-syn can be detected in the cerebrospinal fluid (CSF) of PD patients by targeted mass spectrometry. Here, we report a two-step enrichment method in which phosphotyrosine peptides were first enriched with an anti-phosphotyrosine antibody followed by a second round of enrichment by titanium dioxide (TiO2) beads to detect EGVLpYVGSK sequence derived from tyrosine 39 region of α- and β-synuclein (αβ-syn). Accurate quantification was achieved by adding a synthetic heavy version of pY39 αβ-syn peptide before enzymatic digestion. Using the developed enrichment methods and optimized parallel reaction monitoring (PRM) assays, we detected pY39 αβ-syn peptide in human CSF and demonstrated that the ratio of pY39 αβ-syn to Y39 αβ-syn was significantly increased in the CSF of patients with PD. We anticipate that this optimized two-step enrichment-based PRM detection method will help monitor c-Abl activation in PD patients and can also be used to quantify other phosphotyrosine peptides of low abundance in biological samples.