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2UXR

Complex with isocitrate and the protein isocitrate dehydrogenase from the psychrophilic bacterium Desulfotalea psychrophila

Summary for 2UXR
Entry DOI10.2210/pdb2uxr/pdb
Related2UXQ
DescriptorISOCITRATE DEHYDROGENASE, ISOCITRIC ACID, MAGNESIUM ION, ... (5 entities in total)
Functional Keywordspsychrophilic, cold adaptation, thermal stability, isocitrate dehydrogenase, oxidoreductase
Biological sourceDESULFOTALEA PSYCHROPHILA
Total number of polymer chains2
Total formula weight92039.64
Authors
Fedoy, A.-E.,Yang, N.,Martinez, A.,Leiros, H.-K.S.,Steen, I.H. (deposition date: 2007-03-29, release date: 2008-02-05, Last modification date: 2023-12-13)
Primary citationFedoy, A.-E.,Yang, N.,Martinez, A.,Leiros, H.-K.S.,Steen, I.H.
Structural and Functional Properties of Isocitrate Dehydrogenase from the Psychrophilic Bacterium Desulfotalea Psychrophila Reveal a Cold -Active Enzyme with an Unusual High Thermal
J.Mol.Biol., 372:130-, 2007
Cited by
PubMed Abstract: Isocitrate dehydrogenase (IDH) has been studied extensively due to its central role in the Krebs cycle, catalyzing the oxidative NAD(P)(+)-dependent decarboxylation of isocitrate to alpha-ketoglutarate and CO(2). Here, we present the first crystal structure of IDH from a psychrophilic bacterium, Desulfotalea psychrophila (DpIDH). The structural information is combined with a detailed biochemical characterization and a comparative study with IDHs from the mesophilic bacterium Desulfitobacterium hafniense (DhIDH), porcine (PcIDH), human cytosolic (HcIDH) and the hyperthermophilic Thermotoga maritima (TmIDH). DpIDH was found to have a higher melting temperature (T(m)=66.9 degrees C) than its mesophilic homologues and a suboptimal catalytic efficiency at low temperatures. The thermodynamic activation parameters indicated a disordered active site, as seen also for the drastic increase in K(m) for isocitrate at elevated temperatures. A methionine cluster situated at the dimeric interface between the two active sites and a cluster of destabilizing charged amino acids in a region close to the active site might explain the poor isocitrate affinity. On the other hand, DpIDH was optimized for interacting with NADP(+) and the crystal structure revealed unique interactions with the cofactor. The highly acidic surface, destabilizing charged residues, fewer ion pairs and reduced size of ionic networks in DpIDH suggest a flexible global structure. However, strategic placement of ionic interactions stabilizing the N and C termini, and additional ionic interactions in the clasp domain as well as two enlarged aromatic clusters might counteract the destabilizing interactions and promote the increased thermal stability. The structure analysis of DpIDH illustrates how psychrophilic enzymes can adjust their flexibility in dynamic regions during their catalytic cycle without compromising the global stability of the protein.
PubMed: 17632124
DOI: 10.1016/J.JMB.2007.06.040
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.3 Å)
Structure validation

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