Application study of infrared free-electron lasers towards the development of amyloidosis therapy

Author:

Jindo Mikiko,Nakamura Kazuhiro,Okumura HisashiORCID,Tsukiyama KoichiORCID,Kawasaki Takayasu

Abstract

Amyloidosis is known to be caused by the deposition of amyloid fibrils into various biological tissues; effective treatments for the disease are little established today. An infrared free-electron laser (IR-FEL) is an accelerator-based picosecond-pulse laser having tunable infrared wavelengths. In the current study, the irradiation effect of an IR-FEL was tested on an 11-residue peptide (NFLNCYVSGFH) fibril from β2-microglobulin (β2M) with the aim of applying IR-FELs to amyloidosis therapy. Infrared microspectroscopy (IRM) and scanning electron microscopy showed that a fibril of β2M peptide was clearly dissociated by IR-FEL at 6.1 µm (amide I) accompanied by a decrease of the β-sheet and an increase of the α-helix. No dissociative process was recognized at 6.5 µm (amide II) as well as at 5.0 µm (non-specific wavelength). Equilibrium molecular dynamics simulations indicated that the α-helix can exist stably and the probability of forming interchain hydrogen bonds associated with the internal asparagine residue (N4) is notably reduced compared with other amino acids after the β-sheet is dissociated by amide I specific irradiation. This result implies that N4 plays a key role for recombination of hydrogen bonds in the dissociation of the β2M fibril. In addition, the β-sheet was disrupted at temperatures higher than 340 K while the α-helix did not appear even though the fibril was heated up to 363 K as revealed by IRM. The current study gives solid evidence for the laser-mediated conversion from β-sheet to α-helix in amyloid fibrils at the molecular level.

Funder

Japan Society for the Promotion of Science

Publisher

International Union of Crystallography (IUCr)

Subject

Instrumentation,Nuclear and High Energy Physics,Radiation

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Perspective for Molecular Dynamics Simulation Studies of Amyloid-β Aggregates;The Journal of Physical Chemistry B;2023-12-18

2. The structural plasticity of polyglutamine repeats;Current Opinion in Structural Biology;2023-06

3. Amyloid-Fibril Disruption by Ultrasonic Wave and Infrared Laser Observed by Molecular Dynamics Simulation;The Review of High Pressure Science and Technology;2023-06-01

4. Disassembly of Amyloid Fibril with Infrared Free Electron Laser;International Journal of Molecular Sciences;2023-02-12

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