Mass spectrometry-based proteomics and peptidomics for biomarker discovery in neurodegenerative diseases.
Xin Wei, Lingjun Li
Abstract
Xin Wei, Lingjun Li
Abstract
There is an urgent need to search for biomarkers that are indicative of neurodegenerative diseases, as the clinical diagnosis of which remains unsatisfactory. Mass spectrometry (MS) has been playing an important role in studying peptide and protein identities, structures, modifications and interactions that collectively drive their biological functions. MS-based proteomics technology is thus well suited for the biomarker discovery. This article reviews the overall strategies and workflows employed for biomarker discovery and recent applications of MS-based proteomics in neurodegenerative diseases. Special emphasis is placed on the studies of protein post-translational modification pattern changes and differential peptidomics under these pathological conditions.
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There is an urgent need to search for biomarkers that are indicative of neurodegenerative diseases, as the clinical diagnosis of which remains unsatisfactory. Mass spectrometry (MS) has been playing an important role in studying peptide and protein identities, structures, modifications and interactions that collectively drive their biological functions. MS-based proteomics technology is thus well suited for the biomarker discovery. This article reviews the overall strategies and workflows employed for biomarker discovery and recent applications of MS-based proteomics in neurodegenerative diseases. Special emphasis is placed on the studies of protein post-translational modification pattern changes and differential peptidomics under these pathological conditions.
Key concepts: Proteomics, Biomarker discovery, Biomarker, Computational biology, Bioinformatics, Biology, Biochemistry, Gene