Effect of an Amyloidogenic SARS-COV-2 Protein Fragment on α-Synuclein Monomers and Fibrils

被引:20
作者
Jana, Asis K. [1 ]
Lander, Chance W. [1 ]
Chesney, Andrew D. [1 ]
Hansmann, Ulrich H. E. [1 ]
机构
[1] Univ Oklahoma, Dept Chem & Biochem, Norman, OK 73019 USA
基金
美国国家卫生研究院;
关键词
DYNAMICS; AGGREGATION; DISEASE; BINDING;
D O I
10.1021/acs.jpcb.2c01254
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Aggregates of alpha-synuclein are thought to be the disease-causing agent in Parkinson's disease. Various case studies have hinted at a correlation between COVID-19 and the onset of Parkinson's disease. For this reason, we use molecular dynamics simulations to study whether amyloidogenic regions in SARS-COV-2 proteins can initiate and modulate aggregation of alpha-synuclein. As an example, we choose the nine-residue fragment SFYVYSRVK (SK9), located on the C-terminal of the envelope protein of SARS-COV-2. We probe how the presence of SK9 affects the conformational ensemble of alpha-synuclein monomers and the stability of two resolved fibril polymorphs. We find that the viral protein fragment SK9 may alter alpha-synuclein amyloid formation by shifting the ensemble toward aggregation-prone and preferentially rod-like fibril seeding conformations. However, SK9 has only a small effect on the stability of pre-existing or newly formed fibrils. A potential mechanism and key residues for potential virus-induced amyloid formation are described.
引用
收藏
页码:3648 / 3658
页数:11
相关论文
共 51 条
[41]   The Dependence of Amyloid-β Dynamics on Protein Force Fields and Water Models [J].
Somavarapu, Arun Kumar ;
Kepp, Kasper P. .
CHEMPHYSCHEM, 2015, 16 (15) :3278-3289
[42]   alpha-synuclein in Lewy bodies [J].
Spillantini, MG ;
Schmidt, ML ;
Lee, VMY ;
Trojanowski, JQ ;
Jakes, R ;
Goedert, M .
NATURE, 1997, 388 (6645) :839-840
[43]   Extent of N-terminus exposure of monomeric alpha-synuclein determines its aggregation propensity [J].
Stephens, Amberley D. ;
Zacharopoulou, Maria ;
Moons, Rani ;
Fusco, Giuliana ;
Seetaloo, Neeleema ;
Chiki, Anass ;
Woodhams, Philippa J. ;
Mela, Ioanna ;
Lashuel, Hilal A. ;
Phillips, Jonathan J. ;
De Simone, Alfonso ;
Sobott, Frank ;
Schierle, Gabriele S. Kaminski .
NATURE COMMUNICATIONS, 2020, 11 (01)
[44]   Function and Dysfunction of α-Synuclein: Probing Conformational Changes and Aggregation by Single Molecule Fluorescence [J].
Trexler, Adam J. ;
Rhoades, Elizabeth .
MOLECULAR NEUROBIOLOGY, 2013, 47 (02) :622-631
[45]   Software News and Update AutoDock Vina: Improving the Speed and Accuracy of Docking with a New Scoring Function, Efficient Optimization, and Multithreading [J].
Trott, Oleg ;
Olson, Arthur J. .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 2010, 31 (02) :455-461
[46]   Solid-state NMR structure of a pathogenic fibril of full-length human α-synuclein [J].
Tuttle, Marcus D. ;
Comellas, Gemma ;
Nieuwkoop, Andrew J. ;
Covell, Dustin J. ;
Berthold, Deborah A. ;
Kloepper, Kathryn D. ;
Courtney, Joseph M. ;
Kim, Jae K. ;
Barclay, Alexander M. ;
Kendall, Amy ;
Wan, William ;
Stubbs, Gerald ;
Schwieters, Charles D. ;
Lee, Virginia M. Y. ;
George, Julia M. ;
Rienstra, Chad M. .
NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2016, 23 (05) :409-415
[47]   Structure and dynamics of micelle-bound human α-synuclein [J].
Ulmer, TS ;
Bax, A ;
Cole, NB ;
Nussbaum, RL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (10) :9595-9603
[48]   C-terminal truncation of α-synuclein promotes amyloid fibril amplification at physiological pH [J].
van der Wateren, Ingrid M. ;
Knowles, Tuomas P. J. ;
Buell, Alexander K. ;
Dobson, Christopher M. ;
Galvagnion, Celine .
CHEMICAL SCIENCE, 2018, 9 (25) :5506-5516
[49]   Stability of Human Serum Amyloid A Fibrils [J].
Wang, Wenhua ;
Hansmann, Ulrich H. E. .
JOURNAL OF PHYSICAL CHEMISTRY B, 2020, 124 (47) :10708-10717
[50]   Interconversion between Serum Amyloid A Native and Fibril Conformations [J].
Yasar, Fatih ;
Sheridan, Miranda S. ;
Hansmann, Ulrich H. E. .
ACS OMEGA, 2022, 7 (14) :12186-12192