Acetylation within the First 17 Residues of Huntingtin Exon 1 Alters Aggregation and Lipid Binding

被引:52
作者
Chaibva, Maxmore [1 ]
Jawahery, Sudi [2 ]
Pilkington, Albert W. [1 ]
Arndt, James R. [1 ]
Sarver, Olivia [1 ]
Valentine, Stephen [1 ]
Matysiak, Silvina [2 ,5 ]
Legleiter, Justin [1 ,3 ,4 ]
机构
[1] West Virginia Univ, C Eugene Bennett Dept Chem, Morgantown, WV 26506 USA
[2] Univ Maryland, Fischell Dept Bioengn, College Pk, MD 20742 USA
[3] West Virginia Univ, NanoSAFE, Morgantown, WV 26506 USA
[4] West Virginia Univ, Ctr Neurosci, Morgantown, WV 26506 USA
[5] Univ Maryland, Biophys Program, Inst Phys Chem & Technol, College Pk, MD 20742 USA
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
N-TERMINAL FRAGMENTS; HORMONE-RELEASING HORMONE; IMMORTALIZED HYPOTHALAMIC NEURONS; LENGTH-DEPENDENT MANNER; AMYLOID-LIKE FIBRILS; 1-17 MEMBRANE ANCHOR; MUTANT HUNTINGTIN; POLYGLUTAMINE PEPTIDES; INTRANUCLEAR INCLUSIONS; FLANKING SEQUENCES;
D O I
10.1016/j.bpj.2016.06.018
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Huntington's disease (HD) is a genetic neurodegenerative disorder caused by an expanded polyglutamine (polyQ) domain near the N-terminus of the huntingtin (htt) protein. Expanded polyQ leads to htt aggregation. The first 17 amino acids (Nt(17)) in htt comprise a lipid-binding domain that undergoes a number of posttranslational modifications that can modulate htt toxicity and subcellular localization. As there are three lysines within Nt(17), we evaluated the impact of lysine acetylation on htt aggregation in solution and on model lipid bilayers. Acetylation of htt-exon1(51Q) and synthetic truncated htt-exon 1 mimicking peptides (Nt(17)-Q(35)-P-10-KK) was achieved using a selective covalent label, sulfo-N-hydroxysuccinimide (NHSA). With this treatment, all three lysine residues (K6, K9, and K15) in Nt(17) were significantly acetylated. N-terminal htt acetylation retarded fibril formation in solution and promoted the formation of larger globular aggregates. Acetylated htt also bound lipid membranes and disrupted the lipid bilayer morphology less aggressively compared with the wild-type. Computational studies provided mechanistic insights into how acetylation alters the interaction of Nt(17) with lipid membranes. Our results highlight that N-terminal acetylation influences the aggregation of htt and its interaction with lipid bilayers.
引用
收藏
页码:349 / 362
页数:14
相关论文
共 115 条
  • [91] Membrane interactions and lipid binding of casein oligomers and early aggregates
    Sokolovski, Miri
    Sheynis, Tania
    Kolusheva, Sofiya
    Jelinek, Raz
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2008, 1778 (10): : 2341 - 2349
  • [92] Exploring the helix-coil transition via all-atom equilibrium ensemble simulations
    Sorin, EJ
    Pande, VS
    [J]. BIOPHYSICAL JOURNAL, 2005, 88 (04) : 2472 - 2493
  • [93] SUMO modification of Huntingtin and Huntington's disease pathology
    Steffan, JS
    Agrawal, N
    Pallos, J
    Rockabrand, E
    Trotman, LC
    Slepko, N
    Illes, K
    Lukacsovich, T
    Zhu, YZ
    Cattaneo, E
    Pandolfi, PP
    Thompson, LM
    Marsh, JL
    [J]. SCIENCE, 2004, 304 (5667) : 100 - 104
  • [94] Wild-type huntingtin participates in protein trafficking between the Golgi and the extracellular space
    Strehlow, Anne N. T.
    Li, Jun Z.
    Myers, Richard M.
    [J]. HUMAN MOLECULAR GENETICS, 2007, 16 (04) : 391 - 409
  • [95] Interaction of huntingtin fragments with brain membranes -: clues to early dysfunction in Huntington's disease
    Suopanki, J
    Götz, C
    Lutsch, G
    Schiller, J
    Harjes, P
    Herrmann, A
    Wanker, EE
    [J]. JOURNAL OF NEUROCHEMISTRY, 2006, 96 (03) : 870 - 884
  • [96] Polyglutamine disruption of the huntingtin exon 1 N terminus triggers a complex aggregation mechanism
    Thakur, Ashwani K.
    Jayaraman, Murali
    Mishra, Rakesh
    Thakur, Monika
    Chellgren, Veronique M.
    Byeon, In-Ja L.
    Anjum, Dalaver H.
    Kodali, Ravindra
    Creamer, Trevor P.
    Conway, James F.
    Gronenborn, Angela M.
    Wetzel, Ronald
    [J]. NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2009, 16 (04) : 380 - 389
  • [97] The Huntington's Disease Collaborative Research Group, 1993, CELL, V72, P971
  • [98] IKK phosphorylates Huntingtin and targets it for degradation by the proteasome and lysosome
    Thompson, Leslie Michels
    Aiken, Charity T.
    Kaltenbach, Linda S.
    Agrawal, Namita
    Illes, Katalin
    Khoshnan, Ali
    Martinez-Vincente, Marta
    Arrasate, Montserrat
    O'Rourke, Jacqueline Gire
    Khashwji, Hasan
    Lukacsovich, Tamas
    Zhu, Ya-Zhen
    Lau, Alice L.
    Massey, Ashish
    Hayden, Michael R.
    Zeitlin, Scott O.
    Finkbeiner, Steven
    Green, Kim N.
    LaFerla, Frank M.
    Bates, Gillian
    Huang, Lan
    Patterson, Paul H.
    Lo, Donald C.
    Cuervo, Ana Maria
    Marsh, J. Lawrence
    Steffan, Joan S.
    [J]. JOURNAL OF CELL BIOLOGY, 2009, 187 (07) : 1083 - 1099
  • [99] Huntington's disease: the challenge for cell biologists
    Tobin, AJ
    Signer, ER
    [J]. TRENDS IN CELL BIOLOGY, 2000, 10 (12) : 531 - 536
  • [100] Expanded polyglutamine embedded in the endoplasmic reticulum causes membrane distortion and coincides with Bax insertion
    Ueda, Masashi
    Li, Shimo
    Itoh, Masanori
    Wang, Miao-xing
    Hayakawa, Miki
    Islam, Saiful
    Tana
    Nakagawa, Kiyomi
    Chen, Huayue
    Nakagawa, Toshiyuki
    [J]. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2016, 474 (02) : 259 - 263