第21回日本蛋白質科学会年会

講演情報

ポスターセッション

[3P-1] ポスター3(3P-01ー3P-47)

2021年6月18日(金) 15:15 〜 17:15 ポスター会場1

[3P-46] 非平衡分子動力学シミュレーションで見る赤外自由電子レーザーによるアミロイド線維の破壊

奥村 久士1,2,3, 伊藤 暁1,2,3, 中村 和裕4, 川崎 平康5,6 (1.生命創成探究センター, 2.分子研, 3.総研大, 4.群馬大, 5.東京理科大, 6.高エネ研)

We performed nonequilibrium molecular dynamics simulations, in which an amyloid-β amyloid fibril was destroyed via infrared free-electron laser (IR-FEL) irradiation, and discovered a new mechanism, in which water molecules disrupt protein aggregates. The intermolecular hydrogen bonds formed by C=O and N-H in the fibril are broken at each pulse of laser irradiation. These bonds spontaneously reform after the irradiation in many cases. However, when a water molecule happens to enter the gap between C=O and N-H, it inhibits the reformation of the hydrogen bonds. Such sites become defects in the regularly aligned hydrogen bonds, from which all hydrogen bonds in the intermolecular β-sheet are broken as the fraying spreads. This role of water molecules is entirely different from other known mechanisms. Additionally, we found that helix structures form more after the amyloid disruption; this is because the resonance frequency is different in a helix structure. Our findings provide a theoretical basis for the application of IR-FEL to the future treatment of amyloidosis.