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2V62

Structure of vaccinia-related kinase 2

Summary for 2V62
Entry DOI10.2210/pdb2v62/pdb
DescriptorSERINE/THREONINE-PROTEIN KINASE VRK2, MAGNESIUM ION, SUCCINIC ACID, ... (5 entities in total)
Functional Keywordstransferase, atp-binding, membrane, nucleotide-binding, transmembrane
Biological sourceHOMO SAPIENS (HUMAN)
Cellular locationIsoform 1: Cytoplasm. Isoform 2: Cytoplasm: Q86Y07
Total number of polymer chains2
Total formula weight78848.38
Authors
Primary citationScheeff, E.D.,Eswaran, J.,Bunkoczi, G.,Knapp, S.,Manning, G.
Structure of the Pseudokinase Vrk3 Reveals a Degraded Catalytic Site, a Highly Conserved Kinase Fold, and a Putative Regulatory Binding Site.
Structure, 17:128-, 2009
Cited by
PubMed Abstract: About 10% of all protein kinases are predicted to be enzymatically inactive pseudokinases, but the structural details of kinase inactivation have remained unclear. We present the first structure of a pseudokinase, VRK3, and that of its closest active relative, VRK2. Profound changes to the active site region underlie the loss of catalytic activity, and VRK3 cannot bind ATP because of residue substitutions in the binding pocket. However, VRK3 still shares striking structural similarity with VRK2, and appears to be locked in a pseudoactive conformation. VRK3 also conserves residue interactions that are surprising in the absence of enzymatic function; these appear to play important architectural roles required for the residual functions of VRK3. Remarkably, VRK3 has an "inverted" pattern of sequence conservation: although the active site is poorly conserved, portions of the molecular surface show very high conservation, suggesting that they form key interactions that explain the evolutionary retention of VRK3.
PubMed: 19141289
DOI: 10.1016/J.STR.2008.10.018
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.7 Å)
Structure validation

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