Cyclic nucleotide binding and structural changes in the isolated GAF domain of Anabaena adenylyl cyclase, CyaB2

10.7717/peerj.882

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Main Authors: Biswas, K.H, Badireddy, S, Rajendran, A, Anand, G.S, Visweswariah, S.S
Other Authors: BIOLOGY (NU)
Format: Article
Published: 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/176158
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spelling sg-nus-scholar.10635-1761582024-04-03T06:05:43Z Cyclic nucleotide binding and structural changes in the isolated GAF domain of Anabaena adenylyl cyclase, CyaB2 Biswas, K.H Badireddy, S Rajendran, A Anand, G.S Visweswariah, S.S BIOLOGY (NU) BIOLOGICAL SCIENCES MECHANOBIOLOGY INSTITUTE adenylate cyclase CyaB2 adenylyl cyclase cyclic AMP cyclic GMP cyclic nucleotide unclassified drug algorithm Article binding affinity bioluminescence resonance energy transfer controlled study crystal structure enzyme linked immunosorbent assay GAF domain gene mutation human human cell ligand binding mass spectrometry molecular docking mutagenesis nucleotide sequence polymerase chain reaction protein domain protein expression protein purification radioimmunoassay size exclusion chromatography Western blotting 10.7717/peerj.882 PeerJ 2015 3 e882 2020-09-14T08:19:09Z 2020-09-14T08:19:09Z 2015 Article Biswas, K.H, Badireddy, S, Rajendran, A, Anand, G.S, Visweswariah, S.S (2015). Cyclic nucleotide binding and structural changes in the isolated GAF domain of Anabaena adenylyl cyclase, CyaB2. PeerJ 2015 (3) : e882. ScholarBank@NUS Repository. https://doi.org/10.7717/peerj.882 2167-8359 https://scholarbank.nus.edu.sg/handle/10635/176158 Unpaywall 20200831
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic adenylate cyclase
CyaB2 adenylyl cyclase
cyclic AMP
cyclic GMP
cyclic nucleotide
unclassified drug
algorithm
Article
binding affinity
bioluminescence resonance energy transfer
controlled study
crystal structure
enzyme linked immunosorbent assay
GAF domain
gene mutation
human
human cell
ligand binding
mass spectrometry
molecular docking
mutagenesis
nucleotide sequence
polymerase chain reaction
protein domain
protein expression
protein purification
radioimmunoassay
size exclusion chromatography
Western blotting
spellingShingle adenylate cyclase
CyaB2 adenylyl cyclase
cyclic AMP
cyclic GMP
cyclic nucleotide
unclassified drug
algorithm
Article
binding affinity
bioluminescence resonance energy transfer
controlled study
crystal structure
enzyme linked immunosorbent assay
GAF domain
gene mutation
human
human cell
ligand binding
mass spectrometry
molecular docking
mutagenesis
nucleotide sequence
polymerase chain reaction
protein domain
protein expression
protein purification
radioimmunoassay
size exclusion chromatography
Western blotting
Biswas, K.H
Badireddy, S
Rajendran, A
Anand, G.S
Visweswariah, S.S
Cyclic nucleotide binding and structural changes in the isolated GAF domain of Anabaena adenylyl cyclase, CyaB2
description 10.7717/peerj.882
author2 BIOLOGY (NU)
author_facet BIOLOGY (NU)
Biswas, K.H
Badireddy, S
Rajendran, A
Anand, G.S
Visweswariah, S.S
format Article
author Biswas, K.H
Badireddy, S
Rajendran, A
Anand, G.S
Visweswariah, S.S
author_sort Biswas, K.H
title Cyclic nucleotide binding and structural changes in the isolated GAF domain of Anabaena adenylyl cyclase, CyaB2
title_short Cyclic nucleotide binding and structural changes in the isolated GAF domain of Anabaena adenylyl cyclase, CyaB2
title_full Cyclic nucleotide binding and structural changes in the isolated GAF domain of Anabaena adenylyl cyclase, CyaB2
title_fullStr Cyclic nucleotide binding and structural changes in the isolated GAF domain of Anabaena adenylyl cyclase, CyaB2
title_full_unstemmed Cyclic nucleotide binding and structural changes in the isolated GAF domain of Anabaena adenylyl cyclase, CyaB2
title_sort cyclic nucleotide binding and structural changes in the isolated gaf domain of anabaena adenylyl cyclase, cyab2
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/176158
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