CtBP1/BARS Gly172→ Glu mutant structure: impairing NAD (H)-binding and dimerization

M Nardini, C Valente, S Ricagno, A Luini… - Biochemical and …, 2009 - Elsevier
Biochemical and biophysical research communications, 2009Elsevier
C-terminal binding proteins (CtBPs) are multi-functional proteins involved in nuclear
transcriptional co-repression, Golgi membrane fission, and synaptic ribbon formation.
Binding of NAD (H) to CtBPs promotes dimerization. CtBP dimers act as a scaffold for
multimeric protein complex formation, thus bridging transcriptional repressors and their
targets in the nucleus. Based on size-exclusion chromatography experiments and on the
crystal structure of the NAD (H)-free G172E CtBP mutant, we show here that absence of …
C-terminal binding proteins (CtBPs) are multi-functional proteins involved in nuclear transcriptional co-repression, Golgi membrane fission, and synaptic ribbon formation. Binding of NAD(H) to CtBPs promotes dimerization. CtBP dimers act as a scaffold for multimeric protein complex formation, thus bridging transcriptional repressors and their targets in the nucleus. Based on size-exclusion chromatography experiments and on the crystal structure of the NAD(H)-free G172E CtBP mutant, we show here that absence of NAD(H) induces flexibility/backbone conformational changes at the dimerization interface and at the CtBP interdomain region. The results presented shed first light on the correlation between NAD(H)-binding and functional CtBP dimerization.
Elsevier
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