» Articles » PMID: 16416443

Substrate-free Structure of a Monomeric NADP Isocitrate Dehydrogenase: an Open Conformation Phylogenetic Relationship of Isocitrate Dehydrogenase

Overview
Journal Proteins
Date 2006 Jan 18
PMID 16416443
Citations 15
Authors
Affiliations
Soon will be listed here.
Abstract

Both monomeric and dimeric NADP+-dependent isocitrate dehydrogenase (IDH) belong to the metal-dependent beta-decarboxylating dehydrogenase family and catalyze the oxidative decarboxylation from 2R,3S-isocitrate to yield 2-oxoglutarate, CO2, and NADPH. It is important to solve the structures of IDHs from various species to correlate with its function and evolutionary significance. So far, only two crystal structures of substrate/cofactor-bound (isocitrate/NADP) NADP+-dependent monomeric IDH from Azotobacter vinelandii (AvIDH) have been solved. Herein, we report for the first time the substrate/cofactor-free structure of a monomeric NADP+-dependent IDH from Corynebacterium glutamicum (CgIDH) in the presence of Mg2+. The 1.75 A structure of CgIDH-Mg2+ showed a distinct open conformation in contrast to the closed conformation of AvIDH-isocitrate/NADP+ complexes. Fluorescence studies on CgIDH in the presence of isocitrate/or NADP+ suggest the presence of low energy barrier conformers. In CgIDH, the amino acid residues corresponding to the Escherichia coli IDH phosphorylation-loop are alpha-helical compared with the more flexible random-coil region in the E. coli protein where IDH activation is controlled by phosphorylation. This more structured region supports the idea that activation of CgIDH is not controlled by phosphorylation. Monomeric NADP+-specific IDHs have been identified from about 50 different bacterial species, such as proteobacteria, actinobacteria, and planctomycetes, whereas, dimeric NADP+-dependent IDHs are diversified in both prokaryotes and eukaryotes. We have constructed a phylogenetic tree based on amino acid sequences of all bacterial monomeric NADP+-dependent IDHs and also another one with specifically chosen species which either contains both monomeric and dimeric NADP+-dependent IDHs or have monomeric NADP+-dependent, as well as NAD+-dependent IDHs. This is done to examine evolutionary relationships.

Citing Articles

Model-guided metabolic rewiring to bypass pyruvate oxidation for pyruvate derivative synthesis by minimizing carbon loss.

Zhang Y, Wang X, Odesanmi C, Hu Q, Li D, Tang Y mSystems. 2024; 9(3):e0083923.

PMID: 38315666 PMC: 10949502. DOI: 10.1128/msystems.00839-23.


Recent advances of IDH1 mutant inhibitor in cancer therapy.

Tian W, Zhang W, Wang Y, Jin R, Wang Y, Guo H Front Pharmacol. 2022; 13:982424.

PMID: 36091829 PMC: 9449373. DOI: 10.3389/fphar.2022.982424.


From a dimer to a monomer: Construction of a chimeric monomeric isocitrate dehydrogenase.

Tian C, Wen B, Bian M, Jin M, Wang P, Xu L Protein Sci. 2021; 30(12):2396-2407.

PMID: 34647384 PMC: 8605366. DOI: 10.1002/pro.4204.


Biochemical and Phylogenetic Characterization of a Novel NADP-Specific Isocitrate Dehydrogenase From the Marine Microalga .

Huang S, Zhao J, Li W, Wang P, Xue Z, Zhu G Front Mol Biosci. 2021; 8:702083.

PMID: 34291089 PMC: 8287583. DOI: 10.3389/fmolb.2021.702083.


Biochemical and phylogenetic characterization of a monomeric isocitrate dehydrogenase from a marine methanogenic archaeon Methanococcoides methylutens.

Wang P, Wang Y, Guo X, Huang S, Zhu G Extremophiles. 2020; 24(2):319-328.

PMID: 31970482 DOI: 10.1007/s00792-020-01156-2.