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6BX5

The crystal structure of fluoride channel Fluc Ec2 with Monobody S12

Summary for 6BX5
Entry DOI10.2210/pdb6bx5/pdb
DescriptorPutative fluoride ion transporter CrcB, Monobody S12, FLUORIDE ION, ... (5 entities in total)
Functional Keywordsfluc, fluoride channel, monobody, transport protein
Biological sourceEscherichia coli
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Total number of polymer chains4
Total formula weight47848.33
Authors
Turman, D.L.,Miller, C. (deposition date: 2017-12-17, release date: 2018-02-14, Last modification date: 2023-10-04)
Primary citationTurman, D.L.,Cheloff, A.Z.,Corrado, A.D.,Nathanson, J.T.,Miller, C.
Molecular Interactions between a Fluoride Ion Channel and Synthetic Protein Blockers.
Biochemistry, 57:1212-1218, 2018
Cited by
PubMed Abstract: Fluoride ion channels of the Fluc family selectively export F ions to rescue unicellular organisms from acute F toxicity. Crystal structures of bacterial Fluc channels in complex with synthetic monobodies, fibronectin-derived soluble β-sandwich fold proteins, show 2-fold symmetric homodimers with an antiparallel transmembrane topology. Monobodies also block Fluc F current via a pore blocking mechanism. However, little is known about the energetic contributions of individual monobody residues to the affinity of the monobody-channel complex or whether the structural paratope corresponds to functional reality. This study seeks to structurally identify and compare residues interacting with Fluc between two highly similar monobodies and subjects them to mutagenesis and functional measurements of equilibrium affinities via a fluorescence anisotropy binding assay to determine their energetic contributions. The results indicate that the functional and structural paratopes strongly agree and that many Tyr residues at the interface, while playing a key role in affinity, can be substituted with Phe and Trp without large disruptions.
PubMed: 29393634
DOI: 10.1021/acs.biochem.7b01272
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (3 Å)
Structure validation

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