Abstract

CASK is a member of the membrane-associated guanylate kinases (MAGUK) homologs, a family of proteins that scaffold protein complexes at particular regions of the plasma membrane by utilizing multiple protein-binding domains. The GK domain of MAGUKs, which shares high similarity in amino acid sequence with yeast guanylate kinase (yGMPK), is the least characterized MAGUK domain both in structure and function. In addition to its scaffolding function, the GK domain of hCASK has been shown to be involved in transcription regulation. Here we report the crystal structure of the GK domain of human CASK (hCASK-GK) at 1.3-A resolution. The structure rationalizes the inability of the GK domain to catalyze phosphoryl transfer and strongly supports its new function as a protein-binding module. Comparison of the hCASK-GK structure with the available crystal structures of yGMPK provides insight into possible conformational changes that occur in hCASK upon GMP binding. These conformational changes may act to regulate hCASK-GK function in a nucleotide-dependent manner.

Keywords

Guanylate kinaseBasis (linear algebra)NucleotideCell biologyChemistryKinaseBiologyComputational biologyMembraneBiochemistryGeneMembrane proteinMathematics

MeSH Terms

Amino Acid SequenceCalcium-Calmodulin-Dependent Protein KinasesCrystallographyX-RayGuanosine MonophosphateGuanylate KinasesHumansModelsMolecularMolecular Sequence DataNucleoside-Phosphate KinaseProtein BindingProtein ConformationRecombinant ProteinsSequence HomologyAmino Acid

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Publication Info

Year
2002
Type
article
Volume
277
Issue
6
Pages
4159-4165
Citations
36
Access
Closed

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Cite This

Yuanhe Li, Oliver Spangenberg, Ingo Paarmann et al. (2002). Structural Basis for Nucleotide-dependent Regulation of Membrane-associated Guanylate Kinase-like Domains. Journal of Biological Chemistry , 277 (6) , 4159-4165. https://doi.org/10.1074/jbc.m110792200

Identifiers

DOI
10.1074/jbc.m110792200
PMID
11729206

Data Quality

Data completeness: 86%