Atypical binding of the neuronal POU protein N‐Oct3 to noncanonical DNA targets
Open Access
- 1 February 2001
- journal article
- research article
- Published by Wiley in European Journal of Biochemistry
- Vol. 268 (3) , 781-791
- https://doi.org/10.1046/j.1432-1327.2001.01934.x
Abstract
The capacity of POU proteins to recognize different DNA sequences and to bind target DNA in the form of monomers, cooperative dimers or heterodimers is important in relation to their transcriptional regulatory properties. The N-Oct3 neuron-specific protein binds to an octamer-like sequence (AAATAATGC) within the (−102/−72) neuronal promoter region of the human aromatic l-amino acid decarboxylase (AADC) gene. In this atypical case the POUh and POUs tetrameric subsites are spaced one nucleotide apart and in switched order as compared with the consensus octamer. Moreover this POU binding motif overlaps the hepatocyte nuclear factor HNF-3β binding site (TGCTCAGTAAA) which itself contains a heptamer-like sequence (CTCAGTA). Using the isolated DNA binding domains (DBD) of the two proteins, it is shown that, when binding to this unusual recognition sequence, N-Oct3 either exhibits noncooperative homodimerization or allows the simultaneous binding of the second transcription activator HNF-3β. CD studies indicate that the binding of N-Oct3 monomers/dimers and N-Oct3−HNF-3β heterodimers to the DNA induces conformational changes of both protein and DNA. Partial proteolysis/MALDI-MS was used in conjunction with molecular modelling to show that the protein conformational change resulting from binary N-Oct3/DNA complex formation occurs within the linker peptide joining the POUs and POUh subdomains. Furthermore, modelling the N-Oct3/HNF-3β/DNA ternary complex predicts a nucleotide rearrangement in the overlap region and an interaction between both transcription factors. In the light of our findings, which illustrate both site-dependent and site-independent protein and DNA conformational changes, general implications for the allosteric function of DNA response elements in transcriptional regulation are discussed.Keywords
This publication has 44 references indexed in Scilit:
- Highly Cooperative Homodimerization Is a Conserved Property of Neural POU ProteinsPublished by Elsevier ,1998
- Modulation of Transcription Factor Ets-1 DNA Binding: DNA-Induced Unfolding of an α HelixScience, 1995
- Pit-1 binding to specific DNA sites as a monomer or dimer determines gene-specific use of a tyrosine-dependent synergy domain.Genes & Development, 1995
- Interaction of DNA binding domain of HNF-3α with its transferrin enhancer DNA specific target siteFEBS Letters, 1995
- Structure of Bam HI Endonuclease Bound to DNA: Partial Folding and Unfolding on DNA BindingScience, 1995
- Site-specific conformational alteration of the Oct-1 POU domain-DNA complex as the basis for differential recognition by Vmw65 (VP16)Cell, 1994
- A CNS-specific POU transcription factor, Brn-2, is required for establishing mammalian neural cell lineagesNeuron, 1993
- Biochemical characterization of the Oct-2 POU domain with implications for bipartite DNA recognitionBiochemistry, 1992
- Molecular recognitionJournal of Molecular Biology, 1991
- Aromatic L‐amino acid decarboxylase‐immunohistochemistry in the cat lower brainstem and midbrainJournal of Comparative Neurology, 1990