PDB Information

PDB6HKE
MethodX-RAY DIFFRACTION
Host OrganismEscherichia coli
Gene SourceRhodopseudomonas palustris
Primary Citation
A New Mechanism for High-Affinity Uptake of C4-Dicarboxylates in Bacteria Revealed by the Structure of Rhodopseudomonas palustris MatC (RPA3494), a Periplasmic Binding Protein of the Tripartite Tricarboxylate Transporter (TTT) Family.
Rosa, L.T., Dix, S.R., Rafferty, J.B., Kelly, D.J.
J. Mol. Biol.
HeaderTransport Protein
Released2018-09-06
Resolution2.110
CATH Insert Date16 Dec, 2018

PDB Images (10)

PDB Prints

PDB Chains (3)

Chain ID Date inserted into CATH CATH Status
A 16 Dec, 2018 Chopped
B 16 Dec, 2018 Chopped
C 16 Dec, 2018 Chopped

CATH Domains (6)

Domain ID Date inserted into CATH Superfamily CATH Status
6hkeA01 28 Feb, 2019 Holding pen
6hkeA02 28 Feb, 2019 3.40.190.10 Assigned
6hkeB01 28 Feb, 2019 Holding pen
6hkeB02 28 Feb, 2019 3.40.190.10 Assigned
6hkeC01 28 Feb, 2019 Holding pen
6hkeC02 28 Feb, 2019 3.40.190.10 Assigned

UniProtKB Entries (3)

Accession Gene ID Taxon Description
Q6N446 Q6N446_RHOPA Rhodopseudomonas palustris CGA009 Possible TctC subunit of the Tripartite Tricarboxylate Transport(TTT) Family
Q6N446 Q6N446_RHOPA Rhodopseudomonas palustris CGA009 Possible TctC subunit of the Tripartite Tricarboxylate Transport(TTT) Family
Q6N446 Q6N446_RHOPA Rhodopseudomonas palustris CGA009 Possible TctC subunit of the Tripartite Tricarboxylate Transport(TTT) Family
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