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Evidence for functional and regulatory cross-talk between the tricarboxylic acid cycle 2-oxoglutarate dehydrogenase complex and 2-oxoadipate dehydrogenase on the l-lysine,l-hydroxylysine and l-tryptophan degradation pathways from studies in vitro
Authors:Natalia S. Nemeria  Gary Gerfen  Luying Yang  Xu Zhang  Frank Jordan
Affiliation:1. Department of Chemistry, Rutgers University, Newark, NJ 07102-1811, USA;2. Department of Physiology and Biophysics, Albert Einstein College of Medicine, Bronx, NY 10641-2304, USA
Abstract:Herein are reported findings in vitro suggesting both functional and regulatory cross-talk between the human 2-oxoglutarate dehydrogenase complex (hOGDHc), a key regulatory enzyme within the tricarboxylic acid cycle (TCA cycle), and a novel 2-oxoadipate dehydrogenase complex (hOADHc) from the final degradation pathway of l-lysine, l-hydroxylysine and l-tryptophan. The following could be concluded from our studies by using hOGDHc and hOADHc assembled from their individually expressed components in vitro: (i) Different substrate preferences (kcat/Km) were displayed by the two complexes even though they share the same dihydrolipoyl succinyltransferase (hE2o) and dihydrolipoyl dehydrogenase (hE3) components; (ii) Different binding modes were in evidence for the binary hE1o-hE2o and hE1a-hE2o subcomplexes according to fluorescence titrations using site-specifically labeled hE2o-derived proteins; (iii) Similarly to hE1o, the hE1a also forms the ThDP-enamine radical from 2-oxoadipate (electron paramagnetic resonance detection) in the oxidative half reaction; (iv) Both complexes produced superoxide/H2O2 from O2 in the reductive half reaction suggesting that hE1o, and hE1a (within their complexes) could both be sources of reactive oxygen species generation in mitochondria from 2-oxoglutarate and 2-oxoadipate, respectively; (v) Based on our findings, we speculate that hE2o can serve as a trans-glutarylase, in addition to being a trans-succinylase, a role suggested by others; (vi) The glutaryl-CoA produced by hOADHc inhibits hE1o, as does succinyl-CoA, suggesting a regulatory cross-talk between the two complexes on the different metabolic pathways.
Keywords:hOGDHc  human 2-oxoglutarate dehydrogenase complex  hE1o  2-oxoglutarate dehydrogenase, the first E1 component of hOGDHc  hE2o  dihydrolipoyl succinyltransferase, the second E2 component of hOGDHc  hE3  dihydrolipoyl dehydrogenase, the third E3 component of all 2-oxo acid dehydrogenase complexes  LDo  lipoyl domain of hE2o  hE1a  2-oxoadipate dehydrogenase  gene coding for 2-oxoadipate dehydrogenase  hOADHc  2-oxoadipate dehydrogenase complex, assembled from hE1a?+?hE2o?+?hE3  TCA cycle  tricarboxylic acid cycle  2  hydrogen peroxide  IPTG  isopropyl β-D-1-thiogalactopyranoside  TCEP  Tris(2-carboxyethyl)phosphine hydrochloride  ThDP  thiamin diphosphate  DCPIP  2,6-dichlorophenolindophenol  OG  2-oxoglutarate  OA  2-oxoadipate  KMV  DANS-As  (4-((5-(dimethylamino) naphthalene)-1-sulfonamido) phenyl) arsenous acid  FT-MS  Fourier transform mass spectrometry  EPR  Electron Paramagnetic Resonance  2-Oxoglutarate dehydrogenase  2-Oxoadipate dehydrogenase  ThDP-enamine radical  Inhibition by glutaryl-CoA and succinyl-CoA
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