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. Author manuscript; available in PMC: 2010 Feb 10.
Published in final edited form as: Acta Neuropathol. 2009 Mar 14;118(1):131. doi: 10.1007/s00401-009-0517-0

Table 2.

Redox proteomics identification of oxidatively modified proteins in animal models of AD

Oxidatively modified proteins Function
Cell culture plus Aβ(1–42) 14-3-3ζ Signal transduction
GAPDH, Pyruvate kinase, Malate dehydrogenase,glutamate dehydrogenase Energy related
Synaptosomes plus Aβ (1–42) β and γ-actin, GFAP, DRP-2: H+-Transporting two-sector ATPase,
  syntaxin binding protein, elongation factor tu, Glutamate dehydrogenase
Structural proteins, Energy-related and protein synthesis
Excitotoxicity- and Neurotransmission- related
In vivo Aβ(1–42) models Pyruvate dehydrogenase, GAPDH, Phosphoglycerate mutase-1 Energy related
GS Excitotoxicity-and Neurotransmission-related
Tubulin chain 15/α, β-actin, β-Synuclein Structural proteins
14-3-3ζ Signal transduction
Chaperonin 60 Mitochondrial and proteosome
C. elegans treated with Aβ(1–42) Medium-chain and short-chain acyl-CoA dehydrogenase,
  Translation elongation factor EF-1, Malate dehydrogenase, Arginine kinase
Protein synthesis- and Energy-related
Proteasome alpha and beta subunits Proteoasome function
Glutathione-S-tranferase (GST) Antioxidant enzymes
RACK1 ortholog, Adenosine kinase Signaling proteins
Lipid binding protein, Transketolase Lipid metabolism
Beta actin, Myosin regulatory light chain Structural proteins
Canine model GST Antioxidant enzymes
Glutamate dehydrogenase, GAPDH, α-enolase, Fascin actin bundling protein,
  neurofilament L protein
Energy-, excitotoxic-, neurotransmission-, and structure- related

GFAP glial fibrillary acidic protein, DRP-2 dihydroxypyrimidine related protein-2, GS Glutamine synthetase, GAPDH glyceraldehyde 3-phosphate dehydrogenase