Related Experiment Video
Updated: Aug 7, 2026

Using Enzyme-based Biosensors to Measure Tonic and Phasic Glutamate in Alzheimer's Mouse Models
Published on: May 3, 2017
Endogenously nitrated proteins in mouse brain: links to neurodegenerative disease
Colette A Sacksteder1, Wei-Jun Qian, Tatyana V Knyushko
1Cell Biology and Biochemistry Group, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.
Abstract:
Increased abundance of nitrotyrosine modifications of proteins have been documented in multiple pathologies in a variety of tissue types and play a role in the redox regulation of normal metabolism. To identify proteins sensitive to nitrating conditions in vivo, a comprehensive proteomic data set identifying 7792 proteins from a whole mouse brain, generated by LC/LC-MS/MS analyses, was used to identify nitrated proteins. This analysis resulted in the identification of 31 unique nitrotyrosine sites within 29 different proteins. More than half of the nitrated proteins that have been identified are involved in Parkinson's disease, Alzheimer's disease, or other neurodegenerative disorders. Similarly, nitrotyrosine immunoblots of whole brain homogenates show that treatment of mice with 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), an experimental model of Parkinson's disease, induces an increased level of nitration of the same protein bands observed to be nitrated in brains of untreated animals. Comparing sequences and available high-resolution structures around nitrated tyrosines with those of unmodified sites indicates a preference of nitration in vivo for surface accessible tyrosines in loops, a characteristic consistent with peroxynitrite-induced tyrosine modification. In addition, most sequences contain cysteines or methionines proximal to nitrotyrosines, contrary to suggestions that these amino acid side chains prevent tyrosine nitration. More striking is the presence of a positively charged moiety near the sites of nitration, which is not observed for non-nitrated tyrosines. Together, these observations suggest a predictive tool of functionally important sites of nitration and that cellular nitrating conditions play a role in neurodegenerative changes in the brain.
Insights
Protein nitration, identified by nitrotyrosine sites, is linked to neurodegenerative diseases like Parkinson's and Alzheimer's. This study reveals key characteristics of nitrated proteins in the brain, offering insights into disease mechanisms.
Area of Science:
- Biochemistry
- Neuroscience
- Proteomics
Background:
- Nitrotyrosine modifications are observed in various pathologies and influence redox regulation.
- Understanding protein nitration in vivo is crucial for elucidating disease mechanisms.
Purpose of the Study:
- To identify proteins sensitive to nitrating conditions in the whole mouse brain.
- To characterize the features of in vivo protein nitration sites.
Main Methods:
- Comprehensive proteomic analysis of 7792 proteins from whole mouse brain using LC/LC-MS/MS.
- Nitrotyrosine immunoblotting of brain homogenates from control and MPTP-treated mice.
Main Results:
- Identified 31 unique nitrotyrosine sites on 29 proteins.
- Over half of nitrated proteins are associated with neurodegenerative disorders.
- MPTP treatment, a Parkinson's disease model, increased nitration of specific proteins.
Conclusions:
- Nitration preferentially occurs on surface-accessible tyrosines in loops, consistent with peroxynitrite modification.
- Proximal cysteines/methionines and positive charges near nitrotyrosine sites were observed.
- Findings suggest a predictive tool for nitration sites and implicate cellular nitration in neurodegeneration.
Related Concept Videos
Alzheimer Disease ll: Pathophysiology
Parkinson Disease ll: Pathophysiology
Neural Regulation
