Multiscale Simulations of Self-Assembling Peptides: Surface and Core Hydrophobicity Determine Fibril Stability and Amyloid Aggregation

被引:2
|
作者
Iscen, Aysenur [1 ]
Kaygisiz, Ku''bra [2 ]
Synatschke, Christopher V. [2 ]
Weil, Tanja [2 ]
Kremer, Kurt [1 ]
机构
[1] Max Planck Inst Polymer Res, Dept Polymer Theory, D-55128 Mainz, Germany
[2] Max Planck Inst Polymer Res, Dept Synth Macromol, D-55128 Mainz, Germany
关键词
MOLECULAR-DYNAMICS; FIBERS; PHENYLALANINE; AMPHIPHILES; OLIGOMERS; PROVIDE; DISEASE;
D O I
10.1021/acs.biomac.4c00151
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Assemblies of peptides and proteins through specific intermolecular interactions set the basis for macroscopic materials found in nature. Peptides provide easily tunable hydrogen-bonding interactions, which can lead to the formation of ordered structures such as highly stable beta-sheets that can form amyloid-like supramolecular peptide nanofibrils (PNFs). PNFs are of special interest, as they could be considered as mimics of various fibrillar structures found in nature. In their ability to serve as supramolecular scaffolds, they could mimic certain features of the extracellular matrix to provide stability, interact with pathogens such as virions, and transduce signals between the outside and inside of cells. Many PNFs have been reported that reveal rich bioactivities. PNFs supporting neuronal cell growth or lentiviral gene transduction have been studied systematically, and their material properties were correlated to bioactivities. However, the impact of the structure of PNFs, their dynamics, and stabilities on their unique functions is still elusive. Herein, we provide a microscopic view of the self-assembled PNFs to unravel how the amino acid sequence of self-assembling peptides affects their secondary structure and dynamic properties of the peptides within supramolecular fibrils. Based on sequence truncation, amino acid substitution, and sequence reordering, we demonstrate that peptide-peptide aggregation propensity is critical to form bioactive beta-sheet-rich structures. In contrast to previous studies, a very high peptide aggregation propensity reduces bioactivity due to intermolecular misalignment and instabilities that emerge when fibrils are in close proximity to other fibrils in solution. Our multiscale simulation approach correlates changes in biological activity back to single amino acid modifications. Understanding these relationships could lead to future material discoveries where the molecular sequence predictably determines the macroscopic properties and biological activity. In addition, our studies may provide new insights into naturally occurring amyloid fibrils in neurodegenerative diseases.
引用
收藏
页码:3063 / 3075
页数:13
相关论文
共 35 条
  • [21] Enhanced thermal stability and specific activity of Pseudomonas aeruginosa lipoxygenase by fusing with self-assembling amphipathic peptides
    Xinyao Lu
    Song Liu
    Dongxu Zhang
    Xiaoman Zhou
    Miao Wang
    Yi Liu
    Jing Wu
    Guocheng Du
    Jian Chen
    Applied Microbiology and Biotechnology, 2013, 97 : 9419 - 9427
  • [22] Early events in protein aggregation: Molecular flexibility and hydrophobicity/charge interaction in amyloid peptides as studied by molecular dynamics simulations
    Valerio, M
    Colosimo, A
    Conti, F
    Giuliani, A
    Grottesi, A
    Manetti, C
    Zbilut, JP
    PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 2005, 58 (01) : 110 - 118
  • [23] Enhanced thermal stability and specific activity of Pseudomonas aeruginosa lipoxygenase by fusing with self-assembling amphipathic peptides
    Lu, Xinyao
    Liu, Song
    Zhang, Dongxu
    Zhou, Xiaoman
    Wang, Miao
    Liu, Yi
    Wu, Jing
    Du, Guocheng
    Chen, Jian
    APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2013, 97 (21) : 9419 - 9427
  • [24] The effects of pH, temperature, and buffer concentration on the self-assembling behavior, secondary structure, and surface hydrophobicity of donkey and bovine β-casein
    Zhang, Jingjing
    Vincenzetti, Silvia
    Polidori, Paolo
    Polzonetti, Valeria
    Di Michele, Alessandro
    Perinelli, Diego Romano
    Liu, Guiqin
    Li, Lanjie
    Pucciarelli, Stefania
    FOOD CHEMISTRY, 2024, 433
  • [25] Post-assembly surface reactivity of 1,2-dithiolane modified self-assembling peptides
    Smith-Carpenter, Jillian
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2019, 257
  • [26] Critical Aggregation Concentration Can be a Predictor of Doxorubicin Delivery Performance of Self-Assembling Amphiphilic Peptides with Different Hydrophobic Tails
    Zanganeh, Saeed
    Firoozpour, Loghman
    Salavatipour, Maryam Samareh
    Sardari, Soroush
    Cohan, Reza Ahangari
    Mohajel, Nasir
    JOURNAL OF PHARMACEUTICAL SCIENCES, 2024, 113 (08) : 2188 - 2197
  • [27] Self-assembling biocompatible core-shell nanocapsules with versatile surface functionalities for precise pesticide delivery
    Yang, Chunlin
    Lu, Zaiyu
    Zhou, Chunhui
    Yao, Xiang
    Tang, Yawei
    Li, Xiuxia
    Wang, Junjun
    Zhang, Lihong
    CHEMICAL ENGINEERING JOURNAL, 2025, 510
  • [28] Computational design of amyloid self-assembling peptides bearing aromatic residues and the cell adhesive motif Arg-Gly-Asp
    Jonnalagadda, Sai Vamshi R.
    Ornithopoulou, Eirini
    Orr, Asuka A.
    Mossou, Estelle
    Forsyth, V. Trevor
    Mitchell, Edward P.
    Bowler, Matthew W.
    Mitraki, Anna
    Tamamis, Phanourios
    MOLECULAR SYSTEMS DESIGN & ENGINEERING, 2017, 2 (03): : 321 - 335
  • [29] Identification of a Steric Zipper Motif in the Amyloidogenic Core of Human Cystatin C and Its Use for the Design of Self-Assembling Peptides
    Ilowska, Emilia
    Barciszewski, Jakub
    Jaskolski, Mariusz
    Molinski, Augustyn
    Kozak, Maciej
    Szymanska, Aneta
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (10)
  • [30] Solid-state optical properties of self-assembling amyloid-like peptides with different charged states at the terminal ends
    Schiattarella, Chiara
    Diaferia, Carlo
    Gallo, Enrico
    Della Ventura, Bartolomeo
    Morelli, Giancarlo
    Vitagliano, Luigi
    Velotta, Raffaele
    Accardo, Antonella
    SCIENTIFIC REPORTS, 2022, 12 (01)