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Updated: Aug 7, 2026

Millisecond Hydrogen/Deuterium-Exchange Mass Spectrometry for the Study of Alpha-Synuclein Structural Dynamics Under Physiological Conditions
Published on: June 23, 2022
No Significant Secondary Structural Change of α-Synuclein Monomer by Site-Specific DOPA or Phosphorylation
Tatsuhito Matsuo1, Isao Suetake2,3, Mariko Kimura3
1Department of Medical Radiology, Faculty of Health and Medical Sciences, Hiroshima International University, Higashi-Hiroshima, Hiroshima, Japan.
Abstract:
α-Synuclein (αSyn) is a major component of pathogenic Lewy bodies and Lewy neurites and is closely associated with Parkinson's disease. Among the various posttranslational modifications of αSyn, several have been implicated in the degeneration of dopaminergic neurons and are thought to promote Parkinson's disease through enhanced misfolding, aggregation, and accumulation of αSyn. Two such modifications, phosphorylation at Ser129 (S129Phos) and hydroxylation at Tyr136 (Y136DOPA), exert distinct effects on αSyn aggregation: S129Phos has been reported to either inhibit or promote aggregation, whereas Y136DOPA induces the formation of short oligomeric species. To gain insight into the molecular basis underlying the initiation of αSyn multimerization, we semisynthesized αSyn carrying either S129Phos or Y136DOPA and prepared recombinant unmodified full-length αSyn as a control. Vacuum-ultraviolet circular dichroism (VUVCD) spectroscopy revealed that these αSyn variants in their monomeric states possessed essentially identical secondary structures. These results suggest that the modifications themselves do not induce significant secondary structural changes in monomeric αSyn.
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