Structural Model of the Proline-Rich Domain of Huntingtin Exon-1 Fibrils

被引:9
|
作者
Falk, Alexander S. [1 ]
Bravo-Arredondo, Jose M. [1 ]
Varkey, Jobin [1 ]
Pacheco, Sayuri [1 ]
Langen, Ralf [1 ]
Siemer, Ansgar B. [1 ]
机构
[1] USC, Zilkha Neurogenet Inst, Dept Physiol & Neurosci, Keck Sch Med, Los Angeles, CA 90033 USA
基金
美国国家卫生研究院;
关键词
INTRINSICALLY DISORDERED PROTEINS; FLANKING SEQUENCES; REPEAT EXPANSION; WILD-TYPE; DYNAMICS; AGGREGATION; SIMULATIONS; DISEASE; HELIX; AGE;
D O I
10.1016/j.bpj.2020.10.010
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Huntington's disease is a heritable neurodegenerative disease that is caused by a CAG expansion in the first exon of the huntingtin gene. This expansion results in an elongated polyglutamine domain that increases the propensity of huntingtin exon-1 to form cross-beta fibrils. Although the polyglutamine domain is important for fibril formation, the dynamic, C-terminal proline-rich domain (PRD) of huntingtin exon-1 makes up a large fraction of the fibril surface. Because potential fibril toxicity has to be mediated by interactions of the fibril surface with its cellular environment, we wanted to model the conformational space adopted by the PRD. We ran 800-ns long molecular dynamics simulations of the PRD using an explicit water model optimized for intrinsically disordered proteins. These simulations accurately predicted our previous solid-state NMR data and newly acquired electron paramagnetic resonance double electron-electron resonance distances, lending confidence in their accuracy. The simulations show that the PRD generally forms an imperfect polyproline (polyP) II helical conformation. The two polyP regions within the PRD stay in a polyP II helix for most of the simulation, whereas occasional kinks in the proline-rich linker region cause an overall bend in the PRD structure. The dihedral angles of the glycine at the end of the second polyP region are very variable, effectively decoupling the highly dynamic 12 C-terminal residues from the rest of the PRD.
引用
收藏
页码:2019 / 2028
页数:10
相关论文
共 50 条
  • [1] Dynamics of the Proline-Rich C-Terminus of Huntingtin Exon-1 Fibrils
    Caulkins, Bethany G.
    Cervantes, Silvia A.
    Isas, J. Mario
    Siemer, Ansgar B.
    JOURNAL OF PHYSICAL CHEMISTRY B, 2018, 122 (41): : 9507 - 9515
  • [2] Formation and Structure of Wild Type Huntingtin Exon-1 Fibrils
    Isas, J. Mario
    Langen, Andreas
    Isas, Myles C.
    Pandey, Nitin K.
    Siemer, Ansgar B.
    BIOCHEMISTRY, 2017, 56 (28) : 3579 - 3586
  • [3] The Early Intermediates Revealed: the Structural Characterization of Huntingtin Exon-1
    Perevozchikova, Tatiana
    Stanley, Christopher
    McWilliams-Koeppen, Helen P.
    Berthelier, Valerie
    FASEB JOURNAL, 2011, 25
  • [4] Emerging β-Sheet Rich Conformations in Supercompact Huntingtin Exon-1 Mutant Structures
    Kang, Hongsuk
    Vazquez, Francisco X.
    Zhang, Leili
    Das, Payel
    Toledo-Sherman, Leticia
    Luan, Binquan
    Levitt, Michael
    Zhou, Ruhong
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2017, 139 (26) : 8820 - 8827
  • [5] Toxic effects of mutant huntingtin in axons are mediated by its proline-rich domain
    Brady, Scott T.
    Mesnard-Hoaglin, Nichole A.
    Mays, Sarah
    Priego, Mercedes
    Dziechciowska, Joanna
    Morris, Sarah
    Kang, Minsu
    Tsai, Ming Ying
    Purks, Jennifer L.
    Klein, Alison
    Gaona, Angelica
    Melloni, Alexandra
    Connors, Theresa
    Hyman, Bradley
    Song, Yuyu
    Morfini, Gerardo A.
    BRAIN, 2024, 147 (06) : 2098 - 2113
  • [6] Solid-State Nuclear Magnetic Resonance on the Static and Dynamic Domains of Huntingtin Exon-1 Fibrils
    Isas, J. Mario
    Langen, Ralf
    Siemer, Ansgar B.
    BIOCHEMISTRY, 2015, 54 (25) : 3942 - 3949
  • [7] The unique proline-rich domain of parotid proline-rich proteins functions in secretory sorting
    Stahl, LE
    Wright, RL
    Castle, JD
    Castle, AM
    JOURNAL OF CELL SCIENCE, 1996, 109 : 1637 - 1645
  • [8] Structural landscape of the proline-rich domain of Sos1 nucleotide exchange factor
    McDonald, Caleb B.
    Bhat, Vikas
    Kurouski, Dmitry
    Mikles, David C.
    Deegan, Brian J.
    Seldeen, Kenneth L.
    Lednev, Igor K.
    Farooq, Amjad
    BIOPHYSICAL CHEMISTRY, 2013, 175 : 54 - 62
  • [9] Structural investigations of a GYF domain covalently linked to a proline-rich peptide
    Christian Freund
    Ronald Kühne
    Sunghyouk Park
    Katharina Thiemke
    Ellis L. Reinherz
    Gerhard Wagner
    Journal of Biomolecular NMR, 2003, 27 : 143 - 149
  • [10] Structural investigations of a GYF domain covalently linked to a proline-rich peptide
    Freund, C
    Kühne, R
    Park, S
    Thiemke, K
    Reinherz, EL
    Wagner, G
    JOURNAL OF BIOMOLECULAR NMR, 2003, 27 (02) : 143 - 149