High-Yield α-Synuclein Purification and Ionic Strength Modification Pivotal to Seed Amplification Assay Performance and Reproducibility

Author:

Janarthanam Chelva1,Clabaugh Griffin1,Wang Zerui2,Melvin Bradley R.3,Scheibe Ileia1,Jin Huajun1,Anantharam Vellareddy1,Urbauer Ramona J. B.4,Urbauer Jeffrey L.4ORCID,Ma Jiyan5,Kanthasamy Arthi1,Huang Xuemei6,Donadio Vincenzo7,Zou Wenquan2,Kanthasamy Anumantha G.1

Affiliation:

1. Center for Neurological Disease Research, Department of Physiology and Pharmacology, University of Georgia, Athens, GA 30602, USA

2. Department of Pathology, Case Western Reserve University School of Medicine, Cleveland, OH 44106, USA

3. Department of Biomedical Sciences, Iowa State University, Ames, IA 50011, USA

4. Department of Chemistry, University of Georgia, Athens, GA 30602, USA

5. Chinese Institute for Brain Research, Beijing 102206, China

6. Department of Neurology, Pennsylvania State University College of Medicine, Hershey, PA 17033, USA

7. IRCCS Institute of Neurological Sciences of Bologna, Complex Operational Unit Clinica Neurologica, 40138 Bologna, Italy

Abstract

Alpha-synuclein seed amplification assays (αSyn-SAAs) have emerged as promising diagnostic tools for Parkinson’s disease (PD) by detecting misfolded αSyn and amplifying the signal through cyclic shaking and resting in vitro. Recently, our group and others have shown that multiple biospecimens, including CSF, skin, and submandibular glands (SMGs), can be used to seed the aggregation reaction and robustly distinguish between patients with PD and non-disease controls. The ultrasensitivity of the assay affords the ability to detect minute quantities of αSyn in peripheral tissues, but it also produces various technical challenges of variability. To address the problem of variability, we present a high-yield αSyn protein purification protocol for the efficient production of monomers with a low propensity for self-aggregation. We expressed wild-type αSyn in BL21 Escherichia coli, lysed the cells using osmotic shock, and isolated αSyn using acid precipitation and fast protein liquid chromatography (FPLC). Following purification, we optimized the ionic strength of the reaction buffer to distinguish the fluorescence maximum (Fmax) separation between disease and healthy control tissues for enhanced assay performance. Our protein purification protocol yielded high quantities of αSyn (average: 68.7 mg/mL per 1 L of culture) and showed highly precise and robust αSyn-SAA results using brain, skin, and SMGs with inter-lab validation.

Funder

NIH

NIH/NINDS

U.S. Army Medical Research Material Command

Alzheimer’s Association, Alzheimer’s Research UK

Publisher

MDPI AG

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