G protein coupling and activation of the metabotropic GABAB heterodimer

被引:18
作者
Yang, Moon Young [1 ]
Kim, Soo-Kyung [1 ]
Goddard, William A., III [1 ]
机构
[1] CALTECH, Mat & Proc Simulat Ctr, Pasadena, CA 91125 USA
关键词
ALLOSTERIC MODULATORS; BINDING-SITES; RECEPTOR; DYNAMICS; INTERFACE; MOLECULES; MECHANISM; MODELS; GUI;
D O I
10.1038/s41467-022-32213-3
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
Metabotropic gamma-aminobutyric acid receptor (GABA(B)R), a class C G protein-coupled receptor (GPCR) heterodimer, plays a crucial role in the central nervous system. Cryo-electron microscopy studies revealed a drastic conformational change upon activation and a unique G protein (GP) binding mode. However, little is known about the mechanism for GP coupling and activation for class C GPCRs. Here, we use molecular metadynamics computations to predict the mechanism by which the inactive GP induces conformational changes in the GABA(B)R transmembrane domain (TMD) to form an intermediate pre-activated state. We find that the inactive GP first interacts with TM3, which further leads to the TMD rearrangement and deeper insertion of the alpha 5 helix that causes the G alpha subunit to open, releasing GDP, and forming the experimentally observed activated structure. This mechanism provides fresh insights into the mechanistic details of class C GPCRs activation expected to be useful for designing selective agonists and antagonists. Despite its crucial role in the central nervous system, little is known about the activation mechanism of GABA(B) receptor. Here, the authors predict that the inactive G protein induces conformational changes of the receptor to form an intermediate state.
引用
收藏
页数:9
相关论文
共 61 条
[1]   Gromacs: High performance molecular simulations through multi-level parallelism from laptops to supercomputers [J].
Abraham, Mark James ;
Murtola, Teemu ;
Schulz, Roland ;
Páll, Szilárd ;
Smith, Jeremy C. ;
Hess, Berk ;
Lindah, Erik .
SoftwareX, 2015, 1-2 :19-25
[2]  
Ballesteros J. A., 1995, Methods in Neurosciences, V25, P366, DOI DOI 10.1016/S1043-9471(05)80049-7
[3]   Molecular structure and physiological functions of GABAB receptors [J].
Bettler, B ;
Kaupmann, K ;
Mosbacher, J ;
Gassmann, M .
PHYSIOLOGICAL REVIEWS, 2004, 84 (03) :835-867
[4]   Opportunities and challenges in the discovery of allosteric modulators of GPCRs for treating CNS disorders [J].
Conn, P. Jeffrey ;
Lindsley, Craig W. ;
Meiler, Jens ;
Niswender, Colleen M. .
NATURE REVIEWS DRUG DISCOVERY, 2014, 13 (09) :692-708
[5]   GABAB receptor agonists for the treatment of drug addiction:: a review of recent findings [J].
Cousins, MS ;
Roberts, DCS ;
de Wit, H .
DRUG AND ALCOHOL DEPENDENCE, 2002, 65 (03) :209-220
[6]  
de Beaurepaire Renaud, 2012, Front Psychiatry, V3, P103, DOI 10.3389/fpsyt.2012.00103
[7]   Structure of class C GPCR metabotropic glutamate receptor 5 transmembrane domain [J].
Dore, Andrew S. ;
Okrasa, Krzysztof ;
Patel, Jayesh C. ;
Serrano-Vega, Maria ;
Bennett, Kirstie ;
Cooke, Robert M. ;
Errey, James C. ;
Jazayeri, Ali ;
Khan, Samir ;
Tehan, Ben ;
Weir, Malcolm ;
Wiggin, Giselle R. ;
Marshall, Fiona H. .
NATURE, 2014, 511 (7511) :557-+
[8]   Assembly of a GPCR-G Protein Complex [J].
Du, Yang ;
Duc, Nguyen Minh ;
Rasmussen, Soren G. F. ;
Hilger, Daniel ;
Kubiak, Xavier ;
Wang, Liwen ;
Bohon, Jennifer ;
Kim, Hee Ryung ;
Wegrecki, Marcin ;
Asuru, Awuri ;
Jeong, Kyung Min ;
Lee, Jeongmi ;
Chance, Mark R. ;
Lodowski, David T. ;
Kobilka, Brian K. ;
Chung, Ka Young .
CELL, 2019, 177 (05) :1232-+
[9]   A SMOOTH PARTICLE MESH EWALD METHOD [J].
ESSMANN, U ;
PERERA, L ;
BERKOWITZ, ML ;
DARDEN, T ;
LEE, H ;
PEDERSEN, LG .
JOURNAL OF CHEMICAL PHYSICS, 1995, 103 (19) :8577-8593
[10]   The GABABReceptor-Structure, Ligand Binding and Drug Development [J].
Evenseth, Linn Samira Mari ;
Gabrielsen, Mari ;
Sylte, Ingebrigt .
MOLECULES, 2020, 25 (13)