TY - JOUR
T1 - Glucagon-like peptide-1 and its class B G protein-coupled receptors
T2 - A long march to therapeutic successes
AU - de Graaf, Chris
AU - Donnelly, Dan
AU - Wootten, Denise
AU - Lau, Jesper
AU - Sexton, Patrick M.
AU - Miller, Laurence J.
AU - Ahn, Jung Mo
AU - Liao, Jiayu
AU - Fletcher, Madeleine M.
AU - Yang, Dehua
AU - Brown, Alastair J H
AU - Zhou, Caihong
AU - Deng, Jiejie
AU - Wang, Ming Wei
N1 - Funding Information:
This work was supported by National Health and Family Planning Commission of China [2012ZX09304-011, 2013ZX09401003-005, 2013ZX09507001, and 2013ZX09507-002 to M.-W.W.]; Chinese Academy of Sciences [to M.-W.W.]; Shanghai Science and Technology Development Fund [15DZ2291600 to M.-W.W.]; Thousand Talents Programin China [toM.-W.W.]; the CAS-Novo Nordisk Research Fund [to D.Y.]; National Natural Science Foundation of China [81373463 to D.Y.]; National Health and Medical Research Council of Australia (NHMRC) Principal Research Fellowship [to P.M.S.]; NHMRC Program [Grant 1055134 to P.M.S.]; NHMRC Career Development Fellowship [to D.W.]; NHMRC Project [Grant 1061044 to P.M.S. and Grant 1065410 to D.W.]; Welch Foundation [AT-1595 to J.-M.A.]; and Juvenile Diabetes Research Foundation [37-2011-20 to J.-M.A.]. C.d.G., D.D., and D.W. contributed equally to this work.
Publisher Copyright:
© 2016 by The Author(s). All rights reserved.
PY - 2016/10
Y1 - 2016/10
N2 - Theglucagon-likepeptide (GLP)-1receptor (GLP-1R) is a class B G protein-coupled receptor (GPCR) that mediates the action of GLP-1, a peptide hormone secretedfromthreemajor tissues inhumans,enteroendocrine L cells in the distal intestine, a cells in the pancreas, and the central nervous system, which exerts important actions useful in the management of type 2 diabetes mellitus and obesity, including glucose homeostasis and regulation of gastric motility and food intake. Peptidic analogs of GLP-1 have been successfully developed with enhanced bioavailability and pharmacological activity. Physiologic and biochemical studies with truncated, chimeric, and mutated peptides and GLP-1R variants, together with ligand-bound crystal structures of the extracellular domain and the first three-dimensional structures of the 7-helical transmembrane domain of class B GPCRs, have provided the basis for a twodomain-binding mechanism of GLP-1 with its cognate receptor. Although efforts in discovering therapeutically viable nonpeptidicGLP-1R agonists have been hampered, small-moleculemodulators offer complementary chemical tools to peptide analogs to investigate ligand-directed biased cellular signaling of GLP-1R. The integrated pharmacological and structural information of different GLP-1 analogs and homologous receptors give new insights into the molecular determinants of GLP-1R ligand selectivity and functional activity, thereby providing novel opportunities in the design and development of more efficacious agents to treat metabolic disorders.
AB - Theglucagon-likepeptide (GLP)-1receptor (GLP-1R) is a class B G protein-coupled receptor (GPCR) that mediates the action of GLP-1, a peptide hormone secretedfromthreemajor tissues inhumans,enteroendocrine L cells in the distal intestine, a cells in the pancreas, and the central nervous system, which exerts important actions useful in the management of type 2 diabetes mellitus and obesity, including glucose homeostasis and regulation of gastric motility and food intake. Peptidic analogs of GLP-1 have been successfully developed with enhanced bioavailability and pharmacological activity. Physiologic and biochemical studies with truncated, chimeric, and mutated peptides and GLP-1R variants, together with ligand-bound crystal structures of the extracellular domain and the first three-dimensional structures of the 7-helical transmembrane domain of class B GPCRs, have provided the basis for a twodomain-binding mechanism of GLP-1 with its cognate receptor. Although efforts in discovering therapeutically viable nonpeptidicGLP-1R agonists have been hampered, small-moleculemodulators offer complementary chemical tools to peptide analogs to investigate ligand-directed biased cellular signaling of GLP-1R. The integrated pharmacological and structural information of different GLP-1 analogs and homologous receptors give new insights into the molecular determinants of GLP-1R ligand selectivity and functional activity, thereby providing novel opportunities in the design and development of more efficacious agents to treat metabolic disorders.
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U2 - 10.1124/pr.115.011395
DO - 10.1124/pr.115.011395
M3 - Article
C2 - 27630114
AN - SCOPUS:84988028207
SN - 0031-6997
VL - 68
SP - 954
EP - 1013
JO - Pharmacological Reviews
JF - Pharmacological Reviews
IS - 4
ER -