Sequence specificity of single-stranded DNA-binding proteins: A novel DNA microarray approach

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Abstract

We have developed a novel DNA microarray-based approach for identification of the sequence-specificity of single-stranded nucleic-acid-binding proteins (SNABPs). For verification, we have shown that the major cold shock protein (CspB) from Bacillus subtilis binds with high affinity to pyrimidine-rich sequences, with a binding preference for the consensus sequence, 5′-GTCTTTG/F;T-3′. The sequence was modelled onto the known structure of CspB and a cytosine-binding pocket was identified, which explains the strong preference for a cytosine base at position 3. This microarray method offers a rapid high-throughput approach for determining the specificity and strength of ss DNA-protein interactions. Further screening of this newly emerging family of transcription factors will help provide an insight into their cellular function. © 2007 The Author(s).

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Morgan, H. P., Estibeiro, P., Wear, M. A., Max, K. E. A., Heinemann, U., Cubeddu, L., … Walkinshaw, M. D. (2007). Sequence specificity of single-stranded DNA-binding proteins: A novel DNA microarray approach. Nucleic Acids Research, 35(10). https://doi.org/10.1093/nar/gkm040

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