The impact of halogenated phenylalanine derivatives on NFGAIL amyloid formation

S Chowdhary, J Moschner, DJ Mikolajczak… - …, 2020 - Wiley Online Library
S Chowdhary, J Moschner, DJ Mikolajczak, M Becker, AF Thünemann, C Kästner
ChemBioChem, 2020Wiley Online Library
Abstract The hexapeptide hIAPP22–27 (NFGAIL) is known as a crucial amyloid core
sequence of the human islet amyloid polypeptide (hIAPP) whose aggregates can be used to
better understand the wild‐type hIAPP′ s toxicity to β‐cell death. In amyloid research, the
role of hydrophobic and aromatic‐aromatic interactions as potential driving forces during the
aggregation process is controversially discussed not only in case of NFGAIL, but also for
amyloidogenic peptides in general. We have used halogenation of the aromatic residue as a …
Abstract
The hexapeptide hIAPP22–27 (NFGAIL) is known as a crucial amyloid core sequence of the human islet amyloid polypeptide (hIAPP) whose aggregates can be used to better understand the wild‐type hIAPP′s toxicity to β‐cell death. In amyloid research, the role of hydrophobic and aromatic‐aromatic interactions as potential driving forces during the aggregation process is controversially discussed not only in case of NFGAIL, but also for amyloidogenic peptides in general. We have used halogenation of the aromatic residue as a strategy to modulate hydrophobic and aromatic‐aromatic interactions and prepared a library of NFGAIL variants containing fluorinated and iodinated phenylalanine analogues. We used thioflavin T staining, transmission electron microscopy (TEM) and small‐angle X‐ray scattering (SAXS) to study the impact of side‐chain halogenation on NFGAIL amyloid formation kinetics. Our data revealed a synergy between aggregation behavior and hydrophobicity of the phenylalanine residue. This study introduces systematic fluorination as a toolbox to further investigate the nature of the amyloid self‐assembly process.
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