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XFEL structures of the human MT 2 melatonin receptor reveal the basis of subtype selectivity
by
Weierstall, Uwe
, Cherezov, Vadim
, Yous, Saïd
, Slocum, Samuel T
, Roth, Bryan L
, Liu, Wei
, Patel, Nilkanth
, Han, Gye Won
, Zhu, Lan
, Hao, Shuming
, Batyuk, Alexander
, Olsen, Reid H J
, Huang, Xi-Ping
, Gati, Cornelius
, Li, Chufeng
, Stevens, Raymond C
, Zaare, Sahba
, Tribo, Alexandra R
, Zatsepin, Nadia A
, Stauch, Benjamin
, McCorvy, John D
, Grandner, Jessica M
, Johansson, Linda C
, Katritch, Vsevolod
in
Crystallization
/ Diabetes Mellitus, Type 2 - genetics
/ Electrons
/ Humans
/ Indenes - chemistry
/ Indenes - metabolism
/ Lasers
/ Ligands
/ Melatonin - analogs & derivatives
/ Melatonin - chemistry
/ Melatonin - metabolism
/ Models, Molecular
/ Molecular Docking Simulation
/ Molecular Dynamics Simulation
/ Mutation
/ Receptor, Melatonin, MT1 - chemistry
/ Receptor, Melatonin, MT1 - metabolism
/ Receptor, Melatonin, MT2 - chemistry
/ Receptor, Melatonin, MT2 - genetics
/ Receptor, Melatonin, MT2 - metabolism
/ Structure-Activity Relationship
/ Substrate Specificity
2019
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XFEL structures of the human MT 2 melatonin receptor reveal the basis of subtype selectivity
by
Weierstall, Uwe
, Cherezov, Vadim
, Yous, Saïd
, Slocum, Samuel T
, Roth, Bryan L
, Liu, Wei
, Patel, Nilkanth
, Han, Gye Won
, Zhu, Lan
, Hao, Shuming
, Batyuk, Alexander
, Olsen, Reid H J
, Huang, Xi-Ping
, Gati, Cornelius
, Li, Chufeng
, Stevens, Raymond C
, Zaare, Sahba
, Tribo, Alexandra R
, Zatsepin, Nadia A
, Stauch, Benjamin
, McCorvy, John D
, Grandner, Jessica M
, Johansson, Linda C
, Katritch, Vsevolod
in
Crystallization
/ Diabetes Mellitus, Type 2 - genetics
/ Electrons
/ Humans
/ Indenes - chemistry
/ Indenes - metabolism
/ Lasers
/ Ligands
/ Melatonin - analogs & derivatives
/ Melatonin - chemistry
/ Melatonin - metabolism
/ Models, Molecular
/ Molecular Docking Simulation
/ Molecular Dynamics Simulation
/ Mutation
/ Receptor, Melatonin, MT1 - chemistry
/ Receptor, Melatonin, MT1 - metabolism
/ Receptor, Melatonin, MT2 - chemistry
/ Receptor, Melatonin, MT2 - genetics
/ Receptor, Melatonin, MT2 - metabolism
/ Structure-Activity Relationship
/ Substrate Specificity
2019
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XFEL structures of the human MT 2 melatonin receptor reveal the basis of subtype selectivity
by
Weierstall, Uwe
, Cherezov, Vadim
, Yous, Saïd
, Slocum, Samuel T
, Roth, Bryan L
, Liu, Wei
, Patel, Nilkanth
, Han, Gye Won
, Zhu, Lan
, Hao, Shuming
, Batyuk, Alexander
, Olsen, Reid H J
, Huang, Xi-Ping
, Gati, Cornelius
, Li, Chufeng
, Stevens, Raymond C
, Zaare, Sahba
, Tribo, Alexandra R
, Zatsepin, Nadia A
, Stauch, Benjamin
, McCorvy, John D
, Grandner, Jessica M
, Johansson, Linda C
, Katritch, Vsevolod
in
Crystallization
/ Diabetes Mellitus, Type 2 - genetics
/ Electrons
/ Humans
/ Indenes - chemistry
/ Indenes - metabolism
/ Lasers
/ Ligands
/ Melatonin - analogs & derivatives
/ Melatonin - chemistry
/ Melatonin - metabolism
/ Models, Molecular
/ Molecular Docking Simulation
/ Molecular Dynamics Simulation
/ Mutation
/ Receptor, Melatonin, MT1 - chemistry
/ Receptor, Melatonin, MT1 - metabolism
/ Receptor, Melatonin, MT2 - chemistry
/ Receptor, Melatonin, MT2 - genetics
/ Receptor, Melatonin, MT2 - metabolism
/ Structure-Activity Relationship
/ Substrate Specificity
2019
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XFEL structures of the human MT 2 melatonin receptor reveal the basis of subtype selectivity
Journal Article
XFEL structures of the human MT 2 melatonin receptor reveal the basis of subtype selectivity
2019
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Overview
The human MT
and MT
melatonin receptors
are G-protein-coupled receptors (GPCRs) that help to regulate circadian rhythm and sleep patterns
. Drug development efforts have targeted both receptors for the treatment of insomnia, circadian rhythm and mood disorders, and cancer
, and MT
has also been implicated in type 2 diabetes
. Here we report X-ray free electron laser (XFEL) structures of the human MT
receptor in complex with the agonists 2-phenylmelatonin (2-PMT) and ramelteon
at resolutions of 2.8 Å and 3.3 Å, respectively, along with two structures of function-related mutants: H208
A (superscripts represent the Ballesteros-Weinstein residue numbering nomenclature
) and N86
D, obtained in complex with 2-PMT. Comparison of the structures of MT
with a published structure
of MT
reveals that, despite conservation of the orthosteric ligand-binding site residues, there are notable conformational variations as well as differences in [
H]melatonin dissociation kinetics that provide insights into the selectivity between melatonin receptor subtypes. A membrane-buried lateral ligand entry channel is observed in both MT
and MT
, but in addition the MT
structures reveal a narrow opening towards the solvent in the extracellular part of the receptor. We provide functional and kinetic data that support a prominent role for intramembrane ligand entry in both receptors, and suggest that there might also be an extracellular entry path in MT
. Our findings contribute to a molecular understanding of melatonin receptor subtype selectivity and ligand access modes, which are essential for the design of highly selective melatonin tool compounds and therapeutic agents.
Subject
/ Diabetes Mellitus, Type 2 - genetics
/ Humans
/ Lasers
/ Ligands
/ Melatonin - analogs & derivatives
/ Molecular Docking Simulation
/ Molecular Dynamics Simulation
/ Mutation
/ Receptor, Melatonin, MT1 - chemistry
/ Receptor, Melatonin, MT1 - metabolism
/ Receptor, Melatonin, MT2 - chemistry
/ Receptor, Melatonin, MT2 - genetics
/ Receptor, Melatonin, MT2 - metabolism
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