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Structure of rhodopsin and the superfamily of seven-helical receptors: the same and not the same
scientific article (publication date: April 2002)
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scholarly article
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stated in
Europe PubMed Central
PubMed ID
11891118
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:11891118%20AND%20SRC:MED&resulttype=core&format=json
retrieved
8 December 2019
review article
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Europe PubMed Central
title
Structure of rhodopsin and the superfamily of seven-helical receptors: the same and not the same
(English)
1 reference
stated in
Europe PubMed Central
PubMed ID
11891118
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:11891118%20AND%20SRC:MED&resulttype=core&format=json
retrieved
8 December 2019
author
Thomas P Sakmar
series ordinal
1
1 reference
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Europe PubMed Central
PubMed ID
11891118
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:11891118%20AND%20SRC:MED&resulttype=core&format=json
retrieved
8 December 2019
author name string
Thomas P Sakmar
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1
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language of work or name
English
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publication date
1 April 2002
1 reference
stated in
Europe PubMed Central
PubMed ID
11891118
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:11891118%20AND%20SRC:MED&resulttype=core&format=json
retrieved
8 December 2019
published in
Current Opinion in Cell Biology
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stated in
Europe PubMed Central
PubMed ID
11891118
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:11891118%20AND%20SRC:MED&resulttype=core&format=json
retrieved
8 December 2019
volume
14
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Europe PubMed Central
PubMed ID
11891118
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:11891118%20AND%20SRC:MED&resulttype=core&format=json
retrieved
8 December 2019
page(s)
189-195
1 reference
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Europe PubMed Central
PubMed ID
11891118
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:11891118%20AND%20SRC:MED&resulttype=core&format=json
retrieved
8 December 2019
issue
2
1 reference
stated in
Europe PubMed Central
PubMed ID
11891118
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:11891118%20AND%20SRC:MED&resulttype=core&format=json
retrieved
8 December 2019
cites work
Rhodopsin: structural basis of molecular physiology
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7 January 2021
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The 2.0 A crystal structure of a heterotrimeric G protein
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reference URL
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7 January 2021
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G protein mechanisms: insights from structural analysis
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7 January 2021
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Crystal structure at 2.4 angstroms resolution of the complex of transducin betagamma and its regulator, phosducin
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Crossref
reference URL
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7 January 2021
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Structural determinants for regulation of phosphodiesterase by a G protein at 2.0 A
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reference URL
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7 January 2021
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Crystal structure of rhodopsin: A G protein-coupled receptor
1 reference
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Crossref
reference URL
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retrieved
7 January 2021
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Arrangement of rhodopsin transmembrane α-helices
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Crossref
reference URL
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7 January 2021
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An alpha-carbon template for the transmembrane helices in the rhodopsin family of G-protein-coupled receptors
1 reference
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Crossref
reference URL
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7 January 2021
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Advances in Determination of a High-Resolution Three-Dimensional Structure of Rhodopsin, a Model of G-Protein-Coupled Receptors (GPCRs)
1 reference
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Crossref
reference URL
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retrieved
7 January 2021
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Role of the intradiscal domain in rhodopsin assembly and function
1 reference
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Crossref
reference URL
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7 January 2021
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Steric hindrance mutagenesis versus alanine scan in mapping of ligand binding sites in the tachykinin NK1 receptor.
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Role of the extracellular loops of the thyrotropin-releasing hormone receptor: evidence for an initial interaction with thyrotropin-releasing hormone
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Irreversible activation of the gonadotropin-releasing hormone receptor by photoaffinity cross-linking: localization of attachment site to Cys residue in N-terminal segment.
1 reference
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1 reference
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How membranes shape protein structure.
1 reference
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Crossref
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7 January 2021
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Evidence for the specific interaction of a lipid molecule with rhodopsin which is altered in the transition to the active state metarhodopsin II
1 reference
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Crossref
reference URL
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7 January 2021
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Rhodopsin activation affects the environment of specific neighboring phospholipids: an FTIR spectroscopic study
1 reference
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Crossref
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7 January 2021
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Light-induced reorganization of phospholipids in rod disc membranes
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7 January 2021
based on heuristic
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The amino terminus of the fourth cytoplasmic loop of rhodopsin modulates rhodopsin-transducin interaction
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900306-X
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7 January 2021
based on heuristic
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Mutation of the fourth cytoplasmic loop of rhodopsin affects binding of transducin and peptides derived from the carboxyl-terminal sequences of transducin alpha and gamma subunits.
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900306-X
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7 January 2021
based on heuristic
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Signal transfer from rhodopsin to the G-protein: evidence for a two-site sequential fit mechanism
1 reference
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Crossref
reference URL
https://api.crossref.org/works/10.1016%2FS0955-0674%2802%2900306-X
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7 January 2021
based on heuristic
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Rapid activation of transducin by mutations distant from the nucleotide-binding site: evidence for a mechanistic model of receptor-catalyzed nucleotide exchange by G proteins
1 reference
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Crossref
reference URL
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7 January 2021
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Studies on the structure of the G-protein-coupled receptor rhodopsin including the putative G-protein binding site in unactivated and activated forms
1 reference
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Crossref
reference URL
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7 January 2021
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Signaling at zero G: G-protein-independent functions for 7-TM receptors
1 reference
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7 January 2021
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Activation of rhodopsin: new insights from structural and biochemical studies
1 reference
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Crossref
reference URL
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Structure of bacteriorhodopsin at 1.55 A resolution
1 reference
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Crossref
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Crystal Structure of Sensory Rhodopsin II at 2.4 Angstroms: Insights into Color Tuning and Transducer Interaction
1 reference
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Specific tryptophan UV-absorbance changes are probes of the transition of rhodopsin to its active state
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Crossref
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7 January 2021
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inferred from DOI database lookup
Requirement of rigid-body motion of transmembrane helices for light activation of rhodopsin
1 reference
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Crossref
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Rhodopsin activation blocked by metal-ion-binding sites linking transmembrane helices C and F.
1 reference
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Crossref
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G protein-coupled receptors. II. Mechanism of agonist activation.
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Electron diffraction analysis of structural changes in the photocycle of bacteriorhodopsin.
1 reference
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Crossref
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1 reference
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1 reference
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Crossref
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Identifiers
DOI
10.1016/S0955-0674(02)00306-X
1 reference
stated in
Europe PubMed Central
PubMed ID
11891118
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:11891118%20AND%20SRC:MED&resulttype=core&format=json
retrieved
8 December 2019
Fatcat ID
release_iosyumyp2zgynlaxoqsxduifku
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24 November 2022
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mapped directly with Wikidata item
PubMed ID
11891118
1 reference
stated in
Europe PubMed Central
PubMed ID
11891118
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:11891118%20AND%20SRC:MED&resulttype=core&format=json
retrieved
8 December 2019
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