GPCR Crystallization Using Lipidic Cubic Phase Technique

被引:6
作者
Yin, Xin [1 ,2 ]
Xu, Henghao [1 ,2 ]
Hanson, Michael [1 ,2 ,3 ]
Liu, Wei [1 ,2 ,4 ]
机构
[1] Huaihai Inst Technol, Jiangsu Key Lab Marine Pharmaceut Compound Screen, Lianyungang 222005, Peoples R China
[2] Huaihai Inst Technol, Marine Drug Res Inst, Lianyungang 222005, Peoples R China
[3] Receptos Inc, San Diego, CA 92121 USA
[4] Scripps Res Inst, La Jolla, CA 92037 USA
基金
美国国家卫生研究院; 中国国家自然科学基金;
关键词
G protein-coupled receptor ( GPCR); lipidic cubic phase (LCP); membrane proteins; Serial Femtosecond Crystallography (SFX); structure-based drug design; X-ray free-electron laser (XFEL); MEMBRANE-PROTEIN CRYSTALLIZATION; RESOLUTION CRYSTAL-STRUCTURE; COUPLED RECEPTORS; CRYSTALLOGRAPHY; STABILIZATION; COMPLEX; SYSTEM; POLYMORPHISM; TEMPERATURE; MESOPHASES;
D O I
10.2174/1389201015666140922110325
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
G protein-coupled receptors (GPCRs), a family of seven-transmembrane receptors, are among the most important drug targets with over half of all marketed drugs targeting the family. However, only a handful of easily druggable GPCRs are successfully targeted by pharmaceuticals. Efforts to shift this intensive focus to other, more recalcitrant GPCR targets will increasingly draw on new information such as structural details, which have until recently proven tremendously challenging to gather for this class of protein receptors due to the difficulties in obtaining diffraction-quality crystals. Recently, the development and application of lipidic cubic phase (LCP) technology has reduced one major hurdle for crystallization of GPCRs, with 22 unique receptors being structurally characterized from LCP grown crystals over the span of seven years. This review focuses on the technological improvements for LCP that have led to its successful utilization on the GPCR family, including the most recent combination of LCP with the X-ray free-electron laser that dramatically reduces requirements on crystal size, and holds significant promise for shortening timelines for structure determination and for accessing previously unattainable structures such as those of signaling complexes.
引用
收藏
页码:971 / 979
页数:9
相关论文
共 71 条
[1]  
[Anonymous], [No title captured], DOI DOI 10.3791/1712
[2]   Time-resolved protein nanocrystallography using an X-ray free-electron laser [J].
Aquila, Andrew ;
Hunter, Mark S. ;
Doak, R. Bruce ;
Kirian, Richard A. ;
Fromme, Petra ;
White, Thomas A. ;
Andreasson, Jakob ;
Arnlund, David ;
Bajt, Sasa ;
Barends, Thomas R. M. ;
Barthelmess, Miriam ;
Bogan, Michael J. ;
Bostedt, Christoph ;
Bottin, Herve ;
Bozek, John D. ;
Caleman, Carl ;
Coppola, Nicola ;
Davidsson, Jan ;
DePonte, Daniel P. ;
Elser, Veit ;
Epp, Sascha W. ;
Erk, Benjamin ;
Fleckenstein, Holger ;
Foucar, Lutz ;
Frank, Matthias ;
Fromme, Raimund ;
Graafsma, Heinz ;
Grotjohann, Ingo ;
Gumprecht, Lars ;
Hajdu, Janos ;
Hampton, Christina Y. ;
Hartmann, Andreas ;
Hartmann, Robert ;
Hauriege, Stefan ;
Hauser, Guenter ;
Hirsemann, Helmut ;
Holl, Peter ;
Holton, James M. ;
Hoemke, Andre ;
Johansson, Linda ;
Kimmel, Nils ;
Kassemeyer, Stephan ;
Krasniqi, Faton ;
Kuehnel, Kaiuwe ;
Liang, Mengning ;
Lomb, Lukas ;
Malmerberg, Erik ;
Marchesini, Stefano ;
Martin, Andrew V. ;
Maia, Filipe R. N. C. .
OPTICS EXPRESS, 2012, 20 (03) :2706-2716
[3]   Macromolecular electron microscopy in the era of structural genomics [J].
Baumeister, W ;
Steven, AC .
TRENDS IN BIOCHEMICAL SCIENCES, 2000, 25 (12) :624-631
[4]   High-Resolution Protein Structure Determination by Serial Femtosecond Crystallography [J].
Boutet, Sebastien ;
Lomb, Lukas ;
Williams, Garth J. ;
Barends, Thomas R. M. ;
Aquila, Andrew ;
Doak, R. Bruce ;
Weierstall, Uwe ;
DePonte, Daniel P. ;
Steinbrener, Jan ;
Shoeman, Robert L. ;
Messerschmidt, Marc ;
Barty, Anton ;
White, Thomas A. ;
Kassemeyer, Stephan ;
Kirian, Richard A. ;
Seibert, M. Marvin ;
Montanez, Paul A. ;
Kenney, Chris ;
Herbst, Ryan ;
Hart, Philip ;
Pines, Jack ;
Haller, Gunther ;
Gruner, Sol M. ;
Philipp, Hugh T. ;
Tate, Mark W. ;
Hromalik, Marianne ;
Koerner, Lucas J. ;
van Bakel, Niels ;
Morse, John ;
Ghonsalves, Wilfred ;
Arnlund, David ;
Bogan, Michael J. ;
Caleman, Carl ;
Fromme, Raimund ;
Hampton, Christina Y. ;
Hunter, Mark S. ;
Johansson, Linda C. ;
Katona, Gergely ;
Kupitz, Christopher ;
Liang, Mengning ;
Martin, Andrew V. ;
Nass, Karol ;
Redecke, Lars ;
Stellato, Francesco ;
Timneanu, Nicusor ;
Wang, Dingjie ;
Zatsepin, Nadia A. ;
Schafer, Donald ;
Defever, James ;
Neutze, Richard .
SCIENCE, 2012, 337 (6092) :362-364
[5]   A lipid's eye view of membrane protein crystallization in mesophases [J].
Caffrey, M .
CURRENT OPINION IN STRUCTURAL BIOLOGY, 2000, 10 (04) :486-497
[6]   Membrane Protein Structure Determination Using Crystallography and Lipidic Mesophases: Recent Advances and Successes [J].
Caffrey, Martin ;
Li, Dianfan ;
Dukkipati, Abhiram .
BIOCHEMISTRY, 2012, 51 (32) :6266-6288
[7]   Crystallizing membrane proteins using lipidic mesophases [J].
Caffrey, Martin ;
Cherezov, Vadim .
NATURE PROTOCOLS, 2009, 4 (05) :706-731
[8]   Crystallizing Membrane Proteins for Structure Determination: Use of Lipidic Mesophases [J].
Caffrey, Martin .
ANNUAL REVIEW OF BIOPHYSICS, 2009, 38 :29-51
[9]   Overcoming the challenges of membrane protein crystallography [J].
Carpenter, Elisabeth P. ;
Beis, Konstantinos ;
Cameron, Alexander D. ;
Iwata, So .
CURRENT OPINION IN STRUCTURAL BIOLOGY, 2008, 18 (05) :581-586
[10]   Maltose-neopentyl glycol (MNG) amphiphiles for solubilization, stabilization and crystallization of membrane proteins [J].
Chae, Pil Seok ;
Rasmussen, Soren G. F. ;
Rana, Rohini R. ;
Gotfryd, Kamil ;
Chandra, Richa ;
Goren, Michael A. ;
Kruse, Andrew C. ;
Nurva, Shailika ;
Loland, Claus J. ;
Pierre, Yves ;
Drew, David ;
Popot, Jean-Luc ;
Picot, Daniel ;
Fox, Brian G. ;
Guan, Lan ;
Gether, Ulrik ;
Byrne, Bernadette ;
Kobilka, Brian ;
Gellman, Samuel H. .
NATURE METHODS, 2010, 7 (12) :1003-U90