Laura de Boni, Amber Wallis, Aurelia Hays Watson, Alejandro Ruiz-Riquelme, Louise-Ann Leyland, Thomas Bourinaris, Naomi Hannaway, Ullrich Wüllner, Oliver Peters, Josef Priller, Björn H Falkenburger, Jens Wiltfang, Mathias Bähr, Inga Zerr, Katharina Bürger, Robert Perneczky, Stefan Teipel, Matthias Löhle, Wiebke Hermann, Björn-Hendrik Schott, Kathrin Brockmann, Annika Spottke, Katrin Haustein, Peter Breuer, Henry Houlden, Rimona S Weil, Tim Bartels
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Our data, therefore suggest that measuring α-synuclein tetramers in blood may have potential as a facile biomarker assay for early detection and quantitative tracking of PD progression.</p>","PeriodicalId":11597,"journal":{"name":"EMBO Molecular Medicine","volume":" ","pages":"1657-1674"},"PeriodicalIF":9.0000,"publicationDate":"2024-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11250827/pdf/","citationCount":"0","resultStr":"{\"title\":\"Aggregation-resistant alpha-synuclein tetramers are reduced in the blood of Parkinson's patients.\",\"authors\":\"Laura de Boni, Amber Wallis, Aurelia Hays Watson, Alejandro Ruiz-Riquelme, Louise-Ann Leyland, Thomas Bourinaris, Naomi Hannaway, Ullrich Wüllner, Oliver Peters, Josef Priller, Björn H Falkenburger, Jens Wiltfang, Mathias Bähr, Inga Zerr, Katharina Bürger, Robert Perneczky, Stefan Teipel, Matthias Löhle, Wiebke Hermann, Björn-Hendrik Schott, Kathrin Brockmann, Annika Spottke, Katrin Haustein, Peter Breuer, Henry Houlden, Rimona S Weil, Tim Bartels\",\"doi\":\"10.1038/s44321-024-00083-5\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Synucleinopathies such as Parkinson's disease (PD) are defined by the accumulation and aggregation of the α-synuclein protein in neurons, glia and other tissues. 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Aggregation-resistant alpha-synuclein tetramers are reduced in the blood of Parkinson's patients.
Synucleinopathies such as Parkinson's disease (PD) are defined by the accumulation and aggregation of the α-synuclein protein in neurons, glia and other tissues. We have previously shown that destabilization of α-synuclein tetramers is associated with familial PD due to SNCA mutations and demonstrated brain-region specific alterations of α-synuclein multimers in sporadic PD patients following the classical Braak spreading theory. In this study, we assessed relative levels of disordered and higher-ordered multimeric forms of cytosolic α-synuclein in blood from familial PD with G51D mutations and sporadic PD patients. We used an adapted in vitro-cross-linking protocol for human EDTA-whole blood. The relative levels of higher-ordered α-synuclein tetramers were diminished in blood from familial PD and sporadic PD patients compared to controls. Interestingly, the relative amount of α-synuclein tetramers was already decreased in asymptomatic G51D carriers, supporting the hypothesis that α-synuclein multimer destabilization precedes the development of clinical PD. Our data, therefore suggest that measuring α-synuclein tetramers in blood may have potential as a facile biomarker assay for early detection and quantitative tracking of PD progression.
期刊介绍:
EMBO Molecular Medicine is an open access journal in the field of experimental medicine, dedicated to science at the interface between clinical research and basic life sciences. In addition to human data, we welcome original studies performed in cells and/or animals provided they demonstrate human disease relevance.
To enhance and better specify our commitment to precision medicine, we have expanded the scope of EMM and call for contributions in the following fields:
Environmental health and medicine, in particular studies in the field of environmental medicine in its functional and mechanistic aspects (exposome studies, toxicology, biomarkers, modeling, and intervention).
Clinical studies and case reports - Human clinical studies providing decisive clues how to control a given disease (epidemiological, pathophysiological, therapeutic, and vaccine studies). Case reports supporting hypothesis-driven research on the disease.
Biomedical technologies - Studies that present innovative materials, tools, devices, and technologies with direct translational potential and applicability (imaging technologies, drug delivery systems, tissue engineering, and AI)