Conformational changes in the Niemann-Pick type C1 protein NCR1 drive sterol translocation

被引:2
|
作者
Frain, Kelly M. [1 ]
Dedic, Emil [1 ]
Nel, Lynette [1 ]
Bohush, Anastasiia [1 ,2 ]
Olesen, Esben [1 ]
Thaysen, Katja [3 ]
Wustner, Daniel [3 ]
Stokes, David L. [4 ]
Pedersen, Bjorn Panyella [1 ]
机构
[1] Aarhus Univ, Dept Mol Biol & Genet, DK-8000 Aarhus C, Denmark
[2] Aarhus Univ, Aarhus Inst Adv Studies, Dept Mol Biol & Genet, DK-8000 Aarhus C, Denmark
[3] Univ Southern Denmark, Dept Biochem & Mol Biol, DK-5230 Odense M, Denmark
[4] NYU, Sch Med, Dept Biochem & Mol Pharmacol, New York, NY 10016 USA
基金
欧洲研究理事会;
关键词
sterol uptake; Niemann-Picktype C protein; vacuole; cryo-EM; glycocalyx; CRYO-EM STRUCTURE; DISEASE; YEAST; NPC1; GLYCOCALYX; VALIDATION; TRANSITION; TRANSPORT; MEMBRANE; SEQUENCE;
D O I
10.1073/pnas.2315575121
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The membrane protein Niemann-Pick type C1 (NPC1, named NCR1 in yeast) is central to sterol homeostasis in eukaryotes. Saccharomyces cerevisiae NCR1 is localized to the vacuolar membrane, where it is suggested to carry sterols across the protective glycocalyx and deposit them into the vacuolar membrane. However, documentation of a vacuolar glycocalyx in fungi is lacking, and the mechanism for sterol translocation has remained unclear. Here, we provide evidence supporting the presence of a glycocalyx in isolated S. cerevisiae vacuoles and report four cryo- EM structures of NCR1 in two distinct conformations, named tense and relaxed. These two conformations illustrate the movement of sterols through a tunnel formed by the luminal domains, thus bypassing the barrier presented by the glycocalyx. Based on these structures and on comparison with other members of the Resistance-Nodulation-Division (RND) superfamily, we propose a transport model that links changes in the luminal domains with a cycle of protonation and deprotonation within the transmembrane region of the protein. Our model suggests that NPC proteins work by a generalized RND mechanism where the proton motive force drives conformational changes in the transmembrane domains that are allosterically coupled to luminal/extracellular domains to promote sterol transport.
引用
收藏
页数:11
相关论文
共 50 条
  • [41] COMBINED THERAPY WITH CYCLODEXTRIN/ALLOPREGNANOLONE AND MIGLUSTAT IMPROVES MOTOR BUT NOT COGNITIVE FUNCTIONS IN NIEMANN-PICK TYPE C1 MICE
    Hovakimyan, M.
    Maass, F.
    Petersen, J.
    Holzmann, C.
    Witt, M.
    Lukas, J.
    Frech, M. J.
    Huebner, R.
    Rolfs, A.
    Wree, A.
    NEUROSCIENCE, 2013, 252 : 201 - 211
  • [42] Defects in the retina of Niemann-pick type C 1 mutant mice
    Xin Yan
    Lucy Ma
    Marina Hovakimyan
    Jan Lukas
    Andreas Wree
    Marcus Frank
    Rudolf Guthoff
    Arndt Rolfs
    Martin Witt
    Jiankai Luo
    BMC Neuroscience, 15
  • [43] Development and validation of a new genotype-phenotype correlation for Niemann-Pick disease type C1
    Liang, Huan
    Zhan, Xia
    Wang, Yu
    Maegawa, Gustavo H. B.
    Zhang, Huiwen
    JOURNAL OF INHERITED METABOLIC DISEASE, 2024, 47 (02) : 317 - 326
  • [44] A human iPSC-derived inducible neuronal model of Niemann-Pick disease, type C1
    Anika V. Prabhu
    Insung Kang
    Raffaella De Pace
    Christopher A. Wassif
    Hideji Fujiwara
    Pamela Kell
    Xuntian Jiang
    Daniel S. Ory
    Juan S. Bonifacino
    Michael E. Ward
    Forbes D. Porter
    BMC Biology, 19
  • [45] δ-Tocopherol Reduces Lipid Accumulation in Niemann-Pick Type C1 and Wolman Cholesterol Storage Disorders
    Xu, Miao
    Liu, Ke
    Swaroop, Manju
    Porter, Forbes D.
    Sidhu, Rohini
    Finkes, Sally
    Ory, Daniel S.
    Marugan, Juan J.
    Xiao, Jingbo
    Southall, Noel
    Pavan, William J.
    Davidson, Cristin
    Walkley, Steven U.
    Remaley, Alan T.
    Baxa, Ulrich
    Sun, Wei
    McKew, John C.
    Austin, Christopher P.
    Zheng, Wei
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (47) : 39349 - 39360
  • [46] Iron Limitation Restores Autophagy and Increases Lifespan in the Yeast Model of Niemann-Pick Type C1
    Martins, Telma S. S.
    Costa, Rafaela S. S.
    Vilaca, Rita
    Lemos, Carolina
    Teixeira, Vitor
    Pereira, Clara
    Costa, Vitor
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (07)
  • [47] Modeling Niemann-Pick disease type C1 in zebrafish: a robust platform for in vivo screening of candidate therapeutic compounds
    Tseng, Wei-Chia
    Loeb, Hannah E.
    Pei, Wuhong
    Tsai-Morris, Chon-Hwa
    Xu, Lisha
    Cluzeau, Celine, V
    Wassif, Christopher A.
    Feldman, Benjamin
    Burgess, Shawn M.
    Pavan, William J.
    Porter, Forbes D.
    DISEASE MODELS & MECHANISMS, 2018, 11 (09)
  • [48] Systemic AAV9 gene therapy improves the lifespan of mice with Niemann-Pick disease, type C1
    Chandler, Randy J.
    Williams, Ian M.
    Gibson, Alana L.
    Davidson, Cristin D.
    Incao, Arturo A.
    Hubbard, Brandon T.
    Porter, Forbes D.
    Pavan, William J.
    Venditti, Charles P.
    HUMAN MOLECULAR GENETICS, 2017, 26 (01) : 52 - 64
  • [49] Quantitative Proteomic Analysis of Niemann-Pick Disease, Type C1 Cerebellum Identifies Protein Biomarkers and Provides Pathological Insight
    Cologna, Stephanie M.
    Jiang, Xiao-Sheng
    Backlund, Peter S.
    Cluzeau, Celine V. M.
    Dail, Michelle K.
    Yanjanin, Nicole M.
    Siebel, Stephan
    Toth, Cynthia L.
    Jun, Hyun-sik
    Wassif, Christopher A.
    Yergey, Alfred L.
    Porter, Forbes D.
    PLOS ONE, 2012, 7 (10):
  • [50] 1H magnetic resonance spectroscopy of neurodegeneration in a mouse model of niemann-pick type C1 disease
    Totenhagen, John W.
    Yoshimaru, Eriko S.
    Erickson, Robert P.
    Trouard, Theodore P.
    JOURNAL OF MAGNETIC RESONANCE IMAGING, 2013, 37 (05) : 1195 - 1201