Allosteric Modulation and Structural Determination of G-Protein Coupled Receptors

abstract: G protein-coupled receptors (GPCRs) are known to be modulated by membrane cholesterol levels, but whether or not the effects are caused by specific receptor-cholesterol interactions or cholesterol’s general effects on the membrane is not well-understood. Results from coarse-grained molecul...

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Other Authors: Geiger, James (Author)
Format: Doctoral Thesis
Language:English
Published: 2020
Subjects:
Online Access:http://hdl.handle.net/2286/R.I.63027
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spelling ndltd-asu.edu-item-630272021-01-15T05:01:18Z Allosteric Modulation and Structural Determination of G-Protein Coupled Receptors abstract: G protein-coupled receptors (GPCRs) are known to be modulated by membrane cholesterol levels, but whether or not the effects are caused by specific receptor-cholesterol interactions or cholesterol’s general effects on the membrane is not well-understood. Results from coarse-grained molecular dynamics (CGMD) simulations coupled and structural bioinformatics offer new insights into how cholesterol modulates GPCR function by showing cholesterol interactions with β2AR that agree with previously published data. Additionally, differential and specific cholesterol binding in the CCK receptor subfamily was observed while revealing a previously unreported Cholesterol Recognition Amino-acid Consensus (CRAC) sequence that is also conserved across 38% of class A GPCRs. Mutation of this conserved CRAC sequence of the β2AR affects cholesterol stabilization of the receptor in a lipid bilayer. Serial femtosecond crystallography (SFX) with X-ray free electron lasers (XFELs) has proven highly successful for structure determination of challenging membrane proteins crystallized in lipidic cubic phase, however, as most techniques, it has limitations. Using an optimized SFX experimental setup in a helium atmosphere we determined the room temperature structure of the adenosine A2A receptor (A2AAR) at 2.0 Å resolution and compared it with previous A2AAR structures determined in vacuum and/or at cryogenic temperatures. Specifically, we demonstrated the capability of utilizing high XFEL beam transmissions, in conjunction with a high dynamic range detector, to collect high-resolution SFX data while reducing crystalline material consumption and shortening the collection time required for a complete data set. The results of these studies provide a better understanding of receptor-cholesterol interactions that can contribute to novel and improved therapeutics for a variety of diseases. Furthermore, the experimental setups presented herein can be applied to future molecular dynamics and SFX applications for protein nanocrystal samples to aid in structure-based discovery efforts of therapeutic targets that are difficult to crystallize. Dissertation/Thesis Geiger, James (Author) Liu, Wei (Advisor) Mills, Jeremy (Committee member) Chiu, Po-Lin (Committee member) Arizona State University (Publisher) Biochemistry Biophysics Allosteric Modulation Cholesterol Crystallography GPCRs Molecular Dynamics XFEL eng 151 pages Doctoral Dissertation Biochemistry 2020 Doctoral Dissertation http://hdl.handle.net/2286/R.I.63027 http://rightsstatements.org/vocab/InC/1.0/ 2020
collection NDLTD
language English
format Doctoral Thesis
sources NDLTD
topic Biochemistry
Biophysics
Allosteric Modulation
Cholesterol
Crystallography
GPCRs
Molecular Dynamics
XFEL
spellingShingle Biochemistry
Biophysics
Allosteric Modulation
Cholesterol
Crystallography
GPCRs
Molecular Dynamics
XFEL
Allosteric Modulation and Structural Determination of G-Protein Coupled Receptors
description abstract: G protein-coupled receptors (GPCRs) are known to be modulated by membrane cholesterol levels, but whether or not the effects are caused by specific receptor-cholesterol interactions or cholesterol’s general effects on the membrane is not well-understood. Results from coarse-grained molecular dynamics (CGMD) simulations coupled and structural bioinformatics offer new insights into how cholesterol modulates GPCR function by showing cholesterol interactions with β2AR that agree with previously published data. Additionally, differential and specific cholesterol binding in the CCK receptor subfamily was observed while revealing a previously unreported Cholesterol Recognition Amino-acid Consensus (CRAC) sequence that is also conserved across 38% of class A GPCRs. Mutation of this conserved CRAC sequence of the β2AR affects cholesterol stabilization of the receptor in a lipid bilayer. Serial femtosecond crystallography (SFX) with X-ray free electron lasers (XFELs) has proven highly successful for structure determination of challenging membrane proteins crystallized in lipidic cubic phase, however, as most techniques, it has limitations. Using an optimized SFX experimental setup in a helium atmosphere we determined the room temperature structure of the adenosine A2A receptor (A2AAR) at 2.0 Å resolution and compared it with previous A2AAR structures determined in vacuum and/or at cryogenic temperatures. Specifically, we demonstrated the capability of utilizing high XFEL beam transmissions, in conjunction with a high dynamic range detector, to collect high-resolution SFX data while reducing crystalline material consumption and shortening the collection time required for a complete data set. The results of these studies provide a better understanding of receptor-cholesterol interactions that can contribute to novel and improved therapeutics for a variety of diseases. Furthermore, the experimental setups presented herein can be applied to future molecular dynamics and SFX applications for protein nanocrystal samples to aid in structure-based discovery efforts of therapeutic targets that are difficult to crystallize. === Dissertation/Thesis === Doctoral Dissertation Biochemistry 2020
author2 Geiger, James (Author)
author_facet Geiger, James (Author)
title Allosteric Modulation and Structural Determination of G-Protein Coupled Receptors
title_short Allosteric Modulation and Structural Determination of G-Protein Coupled Receptors
title_full Allosteric Modulation and Structural Determination of G-Protein Coupled Receptors
title_fullStr Allosteric Modulation and Structural Determination of G-Protein Coupled Receptors
title_full_unstemmed Allosteric Modulation and Structural Determination of G-Protein Coupled Receptors
title_sort allosteric modulation and structural determination of g-protein coupled receptors
publishDate 2020
url http://hdl.handle.net/2286/R.I.63027
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