Oligoproline effects on polyglutamine conformation and aggregation

被引:210
|
作者
Bhattacharyya, A
Thakur, AK
Chellgren, VM
Thiagarajan, G
Williams, AD
Chellgren, BW
Creamer, TP
Wetzel, R
机构
[1] Univ Tennessee, Grad Sch Med, Knoxville, TN 37920 USA
[2] Univ Kentucky, Dept Mol & Cellular Biochem, Ctr Struct Biol, Lexington, KY 40536 USA
关键词
polyglutamine; Huntington's disease; amyloid; oligoproline; conformation;
D O I
10.1016/j.jmb.2005.10.053
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
There are nine known expanded CAG repeat neurological diseases, including Huntington's disease (HD), each involving the repeat expansion of polyglutamine (polyGIln) in a different protein. Similar conditions can be induced in animal models by expression of the polyGln sequence alone or in other protein contexts. Besides the poly-Gln sequence, the cellular context of the disease protein, and the sequence context of the polyGln within the disease protein, are both likely to contribute to polyGln physical behavior and to pathology. In HD, the N-terminal, exon-1 segment of the protein huntingtin contains the polyGln sequence immediately followed by an oligoproline region. We show here that introduction of a P-10 sequence C-terminal to polyGln in synthetic peptides decreases both the rate of formation and the apparent stability of the amyloid-like aggregates associated with this family of diseases. The sequence can be trimmed to P-6 without altering the suppression, but a P-3 sequence is ineffective. Spacers up to at least three amino acid residues in length can be inserted between polyGln and P-10 without altering this effect. There is no suppression, however, when the P-10 sequence is either placed on the N-terminal side of polyGIn or attached to polyGln via a side-chain tether. The nucleation mechanism of a Q(40) sequence is unchanged upon addition of a P-10 C-terminal extension, yielding a critical nucleus of one. The effects of oligoPro length and structural context on polyGln aggregation are correlated strongly with alterations in the circular dichroism spectra of the monomeric peptides. For example, the P-10 sequence eliminates the small amount of alpha helical content otherwise exhibited by the Q(40) sequence. The P-10 sequence may suppress aggregation by stabilizing an aggregation-incompetent conformation of the monomer. The effect is transportable: a P-10 sequence fixed to the C terminus of the sequence A similarly modulates amyloid fibril formation. (c) 2005 Elsevier Ltd. All rights reserved.
引用
收藏
页码:524 / 535
页数:12
相关论文
共 50 条
  • [1] Assessing Polyglutamine Conformation and Aggregation with Molecular Dynamics Techniques
    Workman, Riley J.
    Madura, Jeffry D.
    BIOPHYSICAL JOURNAL, 2014, 106 (02) : 57A - 57A
  • [3] Conformation Polymorphism of Polyglutamine Proteins
    Feng, Xinran
    Luo, Shouqing
    Lu, Boxun
    TRENDS IN BIOCHEMICAL SCIENCES, 2018, 43 (06) : 424 - 435
  • [4] MOLECULAR PATHWAYS TO POLYGLUTAMINE AGGREGATION
    Robertson, Amy L.
    Bottomley, Stephen P.
    TANDEM REPEAT POLYMORPHISMS: GENETIC PLASTICITY, NEURAL DIVERSITY AND DISEASE, 2012, 769 : 115 - 124
  • [5] Peptide models for inherited neurodegenerative disorders: conformation and aggregation properties of long polyglutamine peptides with and without interruptions
    Sharma, D
    Sharma, S
    Pasha, S
    Brahmachari, SK
    FEBS LETTERS, 1999, 456 (01) : 181 - 185
  • [6] Effects of MM-1 and molecular chaperones on formation of polyglutamine aggregation
    Tashiro, Eirka
    Hideki, Moto
    Makoto, Miyazawa
    Hirotake, Kitaura
    Sanae, M. M. Iguchi-Ariga
    Masataka, Kinjo
    Hiroyoshi, Ariga
    NEUROSCIENCE RESEARCH, 2008, 61 : S44 - S44
  • [7] Effects of MM-1 and molecular chaperones an formation of polyglutamine aggregation
    Tashiro, Erika
    Muto, Hideki
    Zako, Tamotsu
    Miyazawa, Makoto
    Kitaura, Hirotake
    Kitamura, Akira
    Kubota, Hiroshi
    Maeda, Mizuo
    Iguchi-Ariga, Sanae M. M.
    Kinjo, Masataka
    Ariga, Hiroyoshi
    NEUROSCIENCE RESEARCH, 2009, 65 : S248 - S248
  • [8] POLYGLUTAMINE AGGREGATION IN HUNTINGTON AND RELATED DISEASES
    Polling, Saskia
    Hill, Andrew F.
    Hatters, Danny M.
    TANDEM REPEAT POLYMORPHISMS: GENETIC PLASTICITY, NEURAL DIVERSITY AND DISEASE, 2012, 769 : 125 - 140
  • [9] Reconsidering the mechanism of polyglutamine peptide aggregation
    Lee, Christine C.
    Walters, Robert H.
    Murphy, Regina M.
    BIOCHEMISTRY, 2007, 46 (44) : 12810 - 12820
  • [10] Pathogenesis of polyglutamine disorders: aggregation revisited
    Michalik, A
    Van Broeckhoven, C
    HUMAN MOLECULAR GENETICS, 2003, 12 : R173 - R186