Communities & Collections
Researchers & Labs
Titles
DGIST
LIBRARY
DGIST R&D
Detail View
Department of Brain Sciences
Laboratory of Protein Biophysics
1. Journal Articles
Conformational switch that induces GDP release from Gi
Ham, Donghee
;
Ahn, Donghoon
;
Ashim, Janbolat
;
Cho, Yejin
;
Kim, Hee Ryung
;
Yu, Wookyung
;
Chung, Ka Young
Department of Brain Sciences
Laboratory of Protein Biophysics
1. Journal Articles
Citations
WEB OF SCIENCE
Citations
SCOPUS
Metadata Downloads
XML
Excel
Title
Conformational switch that induces GDP release from Gi
Issued Date
2021-03
Citation
Ham, Donghee. (2021-03). Conformational switch that induces GDP release from Gi. Journal of Structural Biology, 213(1), 107694. doi: 10.1016/j.jsb.2020.107694
Type
Article
Author Keywords
Heterotrimeric guanine nucleotide-binding proteins
;
GDP release
;
Structure
Keywords
protein structure
;
Galphai1 protein
;
Galphai2 protein
;
Galphai3 protein
;
Galphai4 protein
;
Galphai5 protein
;
Gbeta6 protein
;
guanosine diphosphate
;
guanosine triphosphate
;
inhibitory guanine nucleotide binding protein
;
unclassified drug
;
Article
;
carboxy terminal sequence
;
conformational transition
;
controlled study
;
molecular dynamics
;
nonhuman
;
point mutation
;
priority journal
;
protein binding
;
protein expression
;
protein function
;
protein protein interaction
;
protein secretion
;
protein purification
ISSN
1047-8477
Abstract
Heterotrimeric guanine nucleotide-binding proteins (G proteins) are composed of α, β, and γ subunits. Gα switches between guanosine diphosphate (GDP)-bound inactive and guanosine triphosphate (GTP)-bound active states, and Gβγ interacts with the GDP-bound state. The GDP-binding regions are composed of two sites: the phosphate-binding and guanine-binding regions. The turnover of GDP and GTP is induced by guanine nucleotide-exchange factors (GEFs), including G protein-coupled receptors (GPCRs), Ric8A, and GIV/Girdin. However, the key structural factors for stabilizing the GDP-bound state of G proteins and the direct structural event for GDP release remain unclear. In this study, we investigated structural factors affecting GDP release by introducing point mutations in selected, conserved residues in Gαi3. We examined the effects of these mutations on the GDP/GTP turnover rate and the overall conformation of Gαi3 as well as the binding free energy between Gαi3 and GDP. We found that dynamic changes in the phosphate-binding regions are an immediate factor for the release of GDP. © 2021 Elsevier Inc.
URI
http://hdl.handle.net/20.500.11750/13479
DOI
10.1016/j.jsb.2020.107694
Publisher
Academic Press
Show Full Item Record
File Downloads
There are no files associated with this item.
공유
공유하기
Related Researcher
Yu, Wookyung
유우경
Department of Brain Sciences
read more
Total Views & Downloads