3SV5 image
Deposition Date 2011-07-12
Release Date 2012-07-18
Last Version Date 2024-11-06
Entry Detail
PDB ID:
3SV5
Title:
Engineered medium-affinity halide-binding protein derived from YFP: iodide complex
Biological Source:
Source Organism:
Host Organism:
Method Details:
Experimental Method:
Resolution:
1.53 Å
R-Value Free:
0.18
R-Value Work:
0.16
R-Value Observed:
0.16
Space Group:
P 21 21 21
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Green fluorescent protein
Gene (Uniprot):GFP
Mutagens:Q69T, S72A, K79R, V163A, T203Y, H231L
Chain IDs:A
Chain Length:260
Number of Molecules:1
Biological Source:Aequorea victoria
Modified Residue
Compound ID Chain ID Parent Comp ID Details 2D Image
CR2 A GLY CIRCULARIZED TRI-PEPTIDE CHROMOPHORE
Primary Citation
Visualization of Synaptic Inhibition with an Optogenetic Sensor Developed by Cell-Free Protein Engineering Automation.
J.Neurosci. 33 16297 16309 (2013)
PMID: 24107961 DOI: 10.1523/JNEUROSCI.4616-11.2013

Abstact

We describe an engineered fluorescent optogenetic sensor, SuperClomeleon, that robustly detects inhibitory synaptic activity in single, cultured mouse neurons by reporting intracellular chloride changes produced by exogenous GABA or inhibitory synaptic activity. Using a cell-free protein engineering automation methodology that bypasses gene cloning, we iteratively constructed, produced, and assayed hundreds of mutations in binding-site residues to identify improvements in Clomeleon, a first-generation, suboptimal sensor. Structural analysis revealed that these improvements involve halide contacts and distant side chain rearrangements. The development of optogenetic sensors that respond to neural activity enables cellular tracking of neural activity using optical, rather than electrophysiological, signals. Construction of such sensors using in vitro protein engineering establishes a powerful approach for developing new probes for brain imaging.

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Primary Citation of related structures
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