Found: 15
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Heterotypic Amyloid β interactions facilitate amyloid assembly and modify amyloid structure.
- Published in:
- EMBO Journal, 2022, v. 41, n. 2, p. 1, doi. 10.15252/embj.2021108591
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- Article
The involvement of dityrosine crosslinking in α-synuclein assembly and deposition in Lewy Bodies in Parkinson's disease.
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- Scientific Reports, 2016, p. 39171, doi. 10.1038/srep39171
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- Article
Effect of bio-engineering on size, shape, composition and rigidity of bacterial microcompartments.
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- Scientific Reports, 2016, p. 36899, doi. 10.1038/srep36899
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- Article
Analysis of Toxic Amyloid Fibril Interactions at Natively Derived Membranes by Ellipsometry.
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- PLoS ONE, 2015, v. 10, n. 7, p. 1, doi. 10.1371/journal.pone.0132309
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- Article
β<sub>2</sub>-Microglobulin Amyloid Fibril-Induced Membrane Disruption Is Enhanced by Endosomal Lipids and Acidic pH.
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- PLoS ONE, 2014, v. 9, n. 8, p. 1, doi. 10.1371/journal.pone.0104492
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- Article
Multi-method global analysis of thermodynamics and kinetics in reconstitution of monellin.
- Published in:
- Proteins, 2004, v. 57, n. 3, p. 586, doi. 10.1002/prot.20241
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- Article
Quantification of amyloid fibril polymorphism by nano-morphometry reveals the individuality of filament assembly.
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- Communications Chemistry, 2020, v. 3, n. 1, p. N.PAG, doi. 10.1038/s42004-020-00372-3
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- Article
Comparative Analysis of the Relative Fragmentation Stabilities of Polymorphic Alpha-Synuclein Amyloid Fibrils.
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- Biomolecules (2218-273X), 2022, v. 12, n. 5, p. 630, doi. 10.3390/biom12050630
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- Article
Insights into the dynamic trajectories of protein filament division revealed by numerical investigation into the mathematical model of pure fragmentation.
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- PLoS Computational Biology, 2021, v. 17, n. 9, p. 1, doi. 10.1371/journal.pcbi.1008964
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- Article
Crystal structure of catena-poly[(μ<sub>3</sub>-5-(4-(tetrazol-1-id-5-yl)phenoxy)benzene-1,3-dicarboxyato-κ<sup>3</sup> O: O′: N)(4-(3-(pyridin-4-yl)propyl)pyridinium-κ N)zinc(II)], C<sub>28</sub>H<sub>22</sub>ZnN<sub>6</sub>O<sub>5</sub>
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- Zeitschrift für Kristallographie / New Crystal Structures, 2016, v. 231, n. 3, p. 737, doi. 10.1515/ncrs-2015-0252
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- Article
Crystal structure of hexaaquabis(µ<sub>2</sub>-3-(6- carboxylatopyridin-2-yl)-5-(pyrazin-2-yl)-1,2,4- triazol-1-ido)bis(µ<sub>3</sub>-3-(6-carboxylatopyridin-2-yl)- 5-(pyrazin-2-yl)-1,2,4-triazol-1-ido)tetramanganese( II) dihydrate, C<sub>48</sub>H<sub>40</sub>Mn<sub>4</sub>N<sub>24</sub>O<sub>16</sub>.
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- Zeitschrift für Kristallographie / New Crystal Structures, 2016, v. 231, n. 2, p. 375, doi. 10.1515/ncrs-2014-9097
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- Article
Crystal structure of 2-(2-methyl-5-(6-(1-methyl-5-(pyrazin-2-yl)-1H-1,2,4- triazol-3-yl)pyridin-2-yl)-2H-1,2,4-triazol-3-yl)pyrazine manganese(II) dibromide, C<sub>19</sub>H<sub>15</sub>Br<sub>2</sub>MnN<sub>11</sub>.
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- Zeitschrift für Kristallographie / New Crystal Structures, 2015, v. 230, n. 2, p. 123, doi. 10.1515/ncrs-2014-9096
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- Article
From Adaptive Readiness to Adaptation Results Testing the Career Construction Model of Adaptation in Chinese Adolescents.
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- Journal of Career Assessment, 2024, v. 32, n. 3, p. 578, doi. 10.1177/10690727231213810
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- Article
Tau (297‐391) forms filaments that structurally mimic the core of paired helical filaments in Alzheimer's disease brain.
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- FEBS Letters, 2020, v. 594, n. 5, p. 944, doi. 10.1002/1873-3468.13675
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- Article
Probing Dynamics within Amyloid Fibrils Using a Novel Capping Method.
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- Angewandte Chemie International Edition, 2009, v. 48, n. 31, p. 5705, doi. 10.1002/anie.200901343
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- Article