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The Possible Structural Models for Polyglutamine Aggregation: A Molecular Dynamics Simulations Study
Authors:Zheng-Li Zhou  Jian-Hua Zhao  Hsuan-Liang Liu  Josephine W Wu  Kung-Tien Liu  Chih-Kuang Chuang
Institution:1. Graduate Institute of Biotechnology, National Taipei University of Technology , 1 Sec. 3 ZhongXiao E. Rd., Taipei , Taiwan , 10608;2. Department of Chemical Engineering and Biotechnology , National Taipei University of Technology , 1 Sec. 3 ZhongXiao E. Rd., Taipei , Taiwan , 10608;3. Graduate Institute of Biotechnology, National Taipei University of Technology , 1 Sec. 3 ZhongXiao E. Rd., Taipei , Taiwan , 10608;4. Department of Chemical Engineering and Biotechnology , National Taipei University of Technology , 1 Sec. 3 ZhongXiao E. Rd., Taipei , Taiwan , 10608;5. Chemical Analysis Division , Institute of Nuclear Energy Research , 1000, Wunhua Rd., Longtan Township, Taoyuan County, Taiwan , 32546;6. Division of Genetics and Metabolism, Department of Medical Research , Mackay Memorial Hospital , 92, Sec. 2, Chung-Shan N. Rd., Taipei , Taiwan , 10449;7. College of Medicine, Fu-Jen Catholic University , 510 Chung Cheng Rd, Hsinchuang, Taipei County , Taiwan , 24205
Abstract:Abstract

Huntington's disease is a neurodegenerative disorder caused by a polyglutamine (polyQ) expansion near the N-terminus of huntingtin. Previous studies have suggested that polyQ aggregation occurs only when the number of glutamine (Q) residues is more than 36-40, the disease threshold. However, the structural characteristics of polyQ nucleation in the very early stage of aggregation still remain elusive. In this study, we designed 18 simulation trials to determine the possible structural models for polyQ nucleation and aggregation with various shapes and sizes of initial β-helical structures, such as left-handed circular, right-handed rectangular, and left- and right-handed triangular. Our results show that the stability of these models significantly increases with increasing the number of rungs, while it is rather insensitive to the number of Qs in each rung. In particular, the 3-rung β-helical models are stable when they adopt the left-handed triangular and right-handed rectangular conformations due to the fact that they preserve high β-turn and β-sheet contents, respectively, during the simulation courses. Thus, we suggested that these two stable β-helical structures with at least 3 rungs might serve as the possible nucleation seeds for polyQ depending on how the structural elements of β-turn and β-sheet are sampled and preserved during the very early stage of aggregation.
Keywords:Huntington's disease  Polyglutamine (polyQ)  Molecular dynamics simulations  β-helix  Nucleation  Aggregation
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